| 1 | Amati, D.,
and Russo, J.G., “Black holes by analytic continuation”,
Phys. Rev. D, 56, 974-982, (1997). Related online version (cited
on 31 May 2005): |
|
| 2 | Amelino-Camelia, G., “Doubly-Special
Relativity: First Results and Key Open Problems”, Int. J. Mod. Phys. D,
11, 1643-1669, (2002). Related online
version (cited on 31 May 2005): |
|
| 3 | Amelino-Camelia, G., Ellis, J.R.,
Mavromatos, N.E., Nanopoulos, D.V., and Sarkar, S., “Potential
Sensitivity of Gamma-Ray Burster Observations to Wave Dispersion in
Vacuo”, Nature, 393, 763-765, (1998). Related online version
(cited on 31 May 2005): |
|
| 4 | Anglin,
J.R., “Influence functionals and the accelerating detector”,
Phys. Rev. D, 47, 4525-4537, (1993). Related online version
(cited on 31 May 2005): |
|
| 5 | Antunes,
N.D., “Numerical simulation of vacuum particle production:
applications to cosmology, dynamical Casimir effect and
time-dependent non-homogeneous dielectrics”, (2003). URL (cited on
31 May 2005): |
|
| 6 | Arbona,
A., “Is a classical Euclidean TOE reasonable?”, (2003). URL (cited
on 31 May 2005): |
|
| 7 | Arteaga,
D., Parentani, R., and Verdaguer, E., “Propagation in a thermal
graviton background”, Phys. Rev. D,
70, 044019, (2004). Related online
version (cited on 31 May 2005): |
|
| 8 | Balazs, N.L., “Effect of a gravitational field, due to a rotating body, on the plane of polarization of an electromagnetic wave”, Phys. Rev., 110, 236-239, (1958). | |
| 9 | Balbinot, R., Fagnocchi, S., and Fabbri, A.,
“Quantum effects in acoustic black holes: The backreaction”,
Phys. Rev. D, 71, 064019-1-11, (2004). Related online version
(cited on 31 May 2005): |
|
| 10 | Balbinot, R., Fagnocchi, S., Fabbri, A., and
Procopio, G.P., “Backreaction in Acoustic Black Holes”,
Phys. Rev. Lett., 95, 161302-1-4, (2004). Related online version
(cited on 31 May 2005): |
|
| 11 | Baldovin, F., Novello, M.,
Perez Bergliaffa, S.E., and Salim, J.M., “A nongravitational
wormhole”, Class. Quantum Grav.,
17, 3265-3276, (2000). Related online
version (cited on 31 May 2005): |
|
| 12 | Barceló, C., and Campos, A., “Braneworld physics
from the analog-gravity perspective”, Phys. Lett. B,
563, 217-223, (2003). Related online
version (cited on 31 May 2005): |
|
| 13 | Barceló,
C., Liberati, S., Sonego, S., and Visser, M., “Causal structure of
analogue spacetimes”, New J. Phys.,
6, 186, (2004). URL (cited on 31 May
2005): |
|
| 14 | Barceló,
C., Liberati, S., and Visser, M., “Analog gravity from
Bose-Einstein condensates”, Class. Quantum
Grav., 18, 1137-1156, (2001).
Related online version (cited on 31 May 2005): |
|
| 15 | Barceló, C., Liberati, S., and Visser, M., “Analog
gravity from field theory normal modes?”, Class. Quantum Grav., 18, 3595-3610, (2001). Related online version
(cited on 31 May 2005): |
|
| 16 | Barceló,
C., Liberati, S., and Visser, M., “Refringence, field theory, and
normal modes”, Class. Quantum Grav., 19,
2961-2982, (2002). Related online version (cited on 31 May
2005): |
|
| 17 | Barceló,
C., Liberati, S., and Visser, M., “Analogue models for FRW
cosmologies”, Int. J. Mod. Phys. D, 12,
1641-1650, (2003). Related online version (cited on 31 May
2005): |
|
| 18 | Barceló,
C., Liberati, S., and Visser, M., “Probing semiclassical analogue
gravity in Bose-Einstein condensates with widely tunable
interactions”, Phys. Rev. A,
68, 053613, (2003). Related online
version (cited on 31 May 2005): |
|
| 19 | Barceló,
C., Liberati, S., and Visser, M., “Towards the Observation of
Hawking Radiation in Bose-Einstein Condensates”, Int. J. Mod. Phys. A, 18, 3735-1-11, (2003). Related online version
(cited on 31 May 2005): |
|
| 20 | Barceló, C., Visser, M., and Liberati, S.,
“Einstein gravity as an emergent phenomenon?”, Int. J. Mod. Phys. D, 10, 799-806, (2001). Related online version (cited
on 31 May 2005): |
|
| 21 | Bardeen, J.M., Carter, B., and Hawking, S.W., “The four laws of black hole mechanics”, Commun. Math. Phys., 31, 161-170, (1973). | |
| 22 | Barrabès, C., Frolov, Valeri P., and
Parentani, R., “Metric fluctuation corrections to Hawking
radiation”, Phys. Rev. D, 59, 124010-1-14, (1999). Related online version
(cited on 31 May 2005): |
|
| 23 | Barrabès, C., Frolov, V.P., and Parentani,
R., “Stochastically fluctuating black-hole geometry, Hawking
radiation and the trans-Planckian problem”, Phys. Rev. D, 62,
044020-1-19, (2000). Related online version (cited on 31 May
2005): |
|
| 24 | Basak, S.,
“Sound wave in vortex with sink”, (2003). URL (cited on 31 May
2005): |
|
| 25 | Basak, S.,
“Analog of Superradiance effect in BEC”, (2005). URL (cited on 31
May 2005): |
|
| 26 | Basak, S.,
and Majumdar, P., “Reflection coefficient for superresonant
scattering”, Class. Quantum Grav., 20,
2929-2936, (2003). Related online version (cited on 31 May
2005): |
|
| 27 | Basak, S.,
and Majumdar, P., “ ‘Superresonance’ from a rotating acoustic black
hole”, Class. Quantum Grav., 20,
3907-3913, (2003). Related online version (cited on 31 May
2005): |
|
| 28 | Bassett,
B.A., Liberati, S., Molina-París, C., and Visser, M.,
“Geometrodynamics of variable-speed-of-light cosmologies”,
Phys. Rev. D, 62, 103518-1-18, (2000). Related online version
(cited on 31 May 2005): |
|
| 29 | Bastero-Gil, M., “What can we learn by probing
trans-Planckian physics”, in Khalil, S., Shafi, Q., and Tallat, H.,
eds., International Conference on High Energy
Physics, Proceedings of the International Conference on High
Energy Physics, January 9-14, 2001, Cairo, Egypt, 283-288, (Rinton
Press, Princeton, U.S.A., 2001). Related online version (cited on
31 May 2005): |
|
| 30 | Belgiorno, F., “Black Hole Thermodynamics in
Carathéodory’s Approach”, Phys. Lett.
A, 312, 324-330, (2003).
Related online version (cited on 31 May 2005): |
|
| 31 | Berti, E.,
Cardoso, V., and Lemos, J.P.S., “Quasinormal modes and classical
wave propagation in analogue black holes”, Phys. Rev. D, 70,
124006, (2004). Related online version (cited on 31 May
2005): |
|
| 32 | Bhattacharyya, G., Mathews, P., Rao, K.,
and Sridhar, K., “Searching for signals of minimal length in extra
dimensional models using dilepton production at hadron colliders”,
Phys. Lett. B, 603, 46-50,
(2004). Related online version (cited on 31 May 2005): |
|
| 33 | Bilic, N.,
“Relativistic Acoustic Geometry”, Class.
Quantum Grav., 16, 3953-3964,
(1999). Related online version (cited on 31 May 2005): |
|
| 34 | Birrell, N.D., and Davies, P.C.W., Quantum Fields in Curved Space, Cambridge Monographs on Mathematical Physics, (Cambridge University Press, Cambridge, U.K., 1982). | |
| 35 | Błaut, A.,
Kowalski-Glikman, J., and Nowak-Szczepaniak, D., “ |
|
| 36 | Bogoliubov, N., “On the theory of superfluidity”, J. Phys. (Moscow), 11, 23, (1947). | |
| 37 | Bombelli, L., and Sonego, S., “Relationships between various characterizations of wave tails”, J. Phys. A, 27, 7177-7199, (1994). | |
| 38 | Boonserm, P., Cattoen, C., Faber, T., Visser,
M., and Weinfurtner, S., “Effective refractive index tensor for
weak field gravity”, Class. Quantum
Grav., 22, 1905-1915, (2005).
Related online version (cited on 31 May 2005): |
|
| 39 | Born, M., and Wolf, E., Principles of Optics: Electromagnetic Theory of Propagation, Interference and Diffraction of Light, (Pergamon, Oxford, U.K.; New York, U.S.A., 1980), 6th edition. | |
| 40 | Bousso, R., and Polchinski, J., “The string theory landscape”, Sci. Am., 291, 60-69, (2004). | |
| 41 | Brandenberger, R.H., “Frontiers of
inflationary cosmology”, Braz. J.
Phys., 31, 131-146, (2001).
Related online version (cited on 31 May 2005): |
|
| 42 | Brandenberger, R.H., “A status review of
inflationary cosmology”, (2001). URL (cited on 31 May
2005): |
|
| 43 | Brandenberger, R.H., “Trans-Planckian
Physics and Inflationary Cosmology”, (2002). URL (cited on 31 May
2005): |
|
| 44 | Brandenberger, R.H., “Lectures on the
theory of cosmological perturbations”, Lect.
Notes Phys., 646, 127-167, (2004). Related online version
(cited on 31 May 2005): |
|
| 45 | Brandenberger, R.H., Joras, S.E., and Martin, J.,
“Trans-Planckian physics and the spectrum of fluctuations in a
bouncing universe”, Phys. Rev. D,
66, 083514-1-9, (2002). Related online
version (cited on 31 May 2005): |
|
| 46 | Brandenberger, R.H., and Martin, J.,
“The robustness of inflation to changes in super-Planck-scale
physics”, Mod. Phys. Lett. A,
16, 999-1006, (2001). Related online
version (cited on 31 May 2005): |
|
| 47 | Brandenberger, R.H., and Martin, J., “On signatures
of short distance physics in the cosmic microwave background”,
Int. J. Mod. Phys. A, 17, 3663-3680, (2002). Related online version
(cited on 31 May 2005): |
|
| 48 | Brevik,
I., and Halnes, G., “Light rays at optical black holes in moving
media”, Phys. Rev. D, 65, 024005-1-12, (2002). Related online version
(cited on 31 May 2005): |
|
| 49 | Brout, R.,
Gabriel, C., Lubo, M., and Spindel, P., “Minimal length uncertainty
principle and the trans-Planckian problem of black hole physics”,
Phys. Rev. D, 59, 044005-1-6, (1999). Related online version
(cited on 31 May 2005): |
|
| 50 | Brout, R.,
Massar, S., Parentani, R., and Spindel, P., “Hawking radiation
without trans-Planckian frequencies”, Phys.
Rev. D, 52, 4559-4568, (1995).
Related online version (cited on 31 May 2005): |
|
| 51 | Brout, R., Massar, S., Parentani, R., and Spindel, P., “A Primer for black hole quantum physics”, Phys. Rep., 260, 329-454, (1995). | |
| 52 | Budker, D., Kimball, D.F., Rochester, S.M., and Yashchuk, V.V., “Nonlinear Magneto-optics and Reduced Group Velocity of Light in Atomic Vapor with Slow Ground State Relaxation”, Phys. Rev. Lett., 83, 1767-1770, (1999). | |
| 53 | Burgess,
C.P., “Quantum Gravity in Everyday Life: General Relativity as an
Effective Field Theory”, Living Rev.
Relativity, 7, lrr-2004-5,
(2004). URL (cited on 31 May 2005): http://www.livingreviews.org/lrr-2004-5. |
|
| 54 | Burgess,
C.P., Cline, J.M., Filotas, E., Matias, J., and Moore, G.D.,
“Loop-generated bounds on changes to the graviton dispersion
relation”, J. High Energy Phys.,
2002(03), 043, (2002). Related online
version (cited on 31 May 2005): |
|
| 55 | Cadoni,
M., “Acoustic analogues of two-dimensional black holes”,
Class. Quantum Grav., 22, 409-419, (2004). Related online version (cited
on 31 May 2005): |
|
| 56 | Cadoni, M.,
and Mignemi, S., “Acoustic analogues of black hole singularities”,
(2005). URL (cited on 31 May 2005): |
|
| 57 | Calogeracos, A., and Volovik, G.E., “Rotational
quantum friction in superfluids: Radiation from object rotating in
superfluid vacuum”, J. Exp. Theor. Phys.
Lett., 69, 281-287, (1999).
Related online version (cited on 31 May 2005): |
|
| 58 | Calzetta, E.A., and Hu, B.L., “Bose-Novae as
Squeezing of the Vacuum by Condensate Dynamics”, (2002). URL (cited
on 31 May 2005): |
|
| 59 | Calzetta, E.A., and Hu, B.L., “Bose-Novae as
Squeezing of Vacuum Fluctuations by Condensate Dynamics”, (2002).
URL (cited on 31 May 2005): |
|
| 60 | Calzetta, E.A., Hu, B.L., and Mazzitelli,
F.D., “Coarse-grained effective action and renormalization group
theory in semiclassical gravity and cosmology”, Phys. Rep., 352,
459-520, (2001). Related online version (cited on 31 May
2005): |
|
| 61 | Canfora,
F., and Vilasi, G., “Back Reaction from Trace Anomaly in
RN-blackholes Evaporation”, J. High Energy
Phys., 2003(12), 055, (2003).
Related online version (cited on 31 May 2005): |
|
| 62 | Canfora,
F., and Vilasi, G., “Trace anomaly and black holes evaporation”,
(2003). URL (cited on 31 May 2005): |
|
| 63 | Cardoso, V., “Acoustic black holes”, (2005). URL
(cited on 31 May 2005): |
|
| 64 | Cardoso,
V., Lemos, J.P.S., and Yoshida, S., “Quasinormal modes and
stability of the rotating acoustic black hole: Numerical analysis”,
Phys. Rev. D, 70, 124032-1-7, (2004). Related online version
(cited on 31 May 2005): |
|
| 65 | Carlip, S.,
“Quantum gravity: A progress report”, Rep.
Prog. Phys., 64, 885-942,
(2001). Related online version (cited on 31 May 2005): |
|
| 66 | Carter, B.,
“Relativistic superfluid models for rotating neutron stars”, in
Blaschke, D., Glendenning, N.K., and Sedrakian, A., eds.,
Physics of Neutron Star Interiors,
vol. 578 of Lecture Notes in Physics, 54, (Springer, Berlin,
Germany; New York, U.S.A., 2001). Related online version (cited on
31 May 2005): |
|
| 67 | Carter, B.,
and Chamel, N., “Covariant analysis of Newtonian multi-fluid models
for neutron stars: I Milne-Cartan structure and variational
formulation”, Int. J. Mod. Phys. D,
13, 291-326, (2004). Related online
version (cited on 31 May 2005): |
|
| 68 | Casadio,
R., “On dispersion relations and the statistical mechanics of
Hawking radiation”, Class. Quantum
Grav., 19, 2453-2462, (2002).
Related online version (cited on 31 May 2005): |
|
| 69 | Casadio, R., “On brane-world black holes and short
scale physics”, Ann. Phys. (N.Y.),
307, 195-208, (2003). Related online
version (cited on 31 May 2005): |
|
| 70 | Casadio, R., and Mersini, L., “Short distance
signatures in cosmology: Why not in black holes?”, Int. J. Mod. Phys. A, 19, 1395-1412, (2004). Related online version
(cited on 31 May 2005): |
|
| 71 | Casher,
A., Englert, F., Itzhaki, N., Massar, S., and Parentani, R., “Black
hole horizon fluctuations”, Nucl. Phys.
B, 484, 419-434, (1997).
Related online version (cited on 31 May 2005): |
|
| 72 | Cassidy,
M.J., and Hawking, S.W., “Models for chronology selection”,
Phys. Rev. D, 57, 2372-2380, (1998). Related online version
(cited on 31 May 2005): |
|
| 73 | Castin, Y., and Dum, R., “Bose-Einstein Condensates in Time Dependent Traps”, Phys. Rev. Lett., 77, 5315-5319, (1996). | |
| 74 | Chang, D.,
Chu, C.-S., and Lin, F.-L., “Transplanckian dispersion relation and
entanglement entropy of black hole”, Fortschr. Phys., 52,
477-482, (2004). Related online version (cited on 31 May
2005): |
|
| 75 | Chang, D.,
Chu, C.-S., and Lin, F.-L., “Transplanckian entanglement entropy”,
Phys. Lett. B, 583, 192-198, (2004). Related online version
(cited on 31 May 2005): |
|
| 76 | Chapline, G., Hohlfeld, E., Laughlin, R.B., and
Santiago, D.I., “Quantum phase transitions and the breakdown of
classical general relativity”, Int. J. Mod.
Phys. A, 18, 3587-3590, (2003).
Related online version (cited on 31 May 2005): |
|
| 77 | Chapline, G., and Mazur, P.O., “Superfluid
picture for rotating space-times”, (2004). URL (cited on 31 May
2005): |
|
| 78 | Cherubini, C., Federici, F., Succi, S., and
Tosi, M.P., “Excised acoustic black holes: The scattering problem
in the time domain”, Phys. Rev. D,
72, 084016-1-9, (2005). Related online
version (cited on 31 May 2005): |
|
| 79 | Christensen, S.M., and Fulling, S.A., “Trace anomalies and the Hawking effect”, Phys. Rev. D, 15, 2088-2104, (1977). | |
| 80 | ChruÅ›ciel, P.T., “Black
holes”, in Frauendiener, J., and Friedrich, H., eds., The Conformal Structure of
Space-Time: Geometry, Analysis, Numerics, Proceedings of the
internationl workshop, Tübingen, Germany, April 2001, vol. 604 of
Lecture Notes in Physics, 61-102, (Springer, Berlin, Germany; New
York, U.S.A., 2002). Related online version (cited on 31 May
2005): |
|
| 81 | Chu, C.-S.,
Greene, B.R., and Shiu, G., “Remarks on inflation and
noncommutative geometry”, Mod. Phys. Lett.
A, 16, 2231-2240, (2001).
Related online version (cited on 31 May 2005): |
|
| 82 | Coleman,
S.R., and Glashow, S.L., “High-energy tests of Lorentz invariance”,
Phys. Rev. D, 59, 116008-1-14, (1999). Related online version
(cited on 31 May 2005): |
|
| 83 | Collins,
H., and Martin, M.R., “The enhancement of inflaton loops in an
|
|
| 84 | Comer, G.L., “Superfluid
analog of the Davies-Unruh effect”, (1992). URL (cited on 31 May
2005): |
|
| 85 | Consoli,
M., “Approximate Lorentz invariance of the vacuum: A physical
solution of the ‘hierarchy problem’?”, (2003). URL (cited on 31 May
2005): |
|
| 86 | Corley, S., “Particle creation via high frequency dispersion”, Phys. Rev. D, 55, 6155-6161, (1997). | |
| 87 | Corley, S.,
“Computing the spectrum of black hole radiation in the presence of
high frequency dispersion: An analytical approach”, Phys. Rev. D, 57,
6280-6291, (1998). Related online version (cited on 31 May
2005): |
|
| 88 | Corley, S.,
and Jacobson, T.A., “Hawking Spectrum and High Frequency
Dispersion”, Phys. Rev. D, 54,
1568-1586, (1996). Related online version (cited on 31 May
2005): |
|
| 89 | Corley,
S., and Jacobson, T.A., “Lattice black holes”, Phys. Rev. D, 57,
6269-6279, (1998). Related online version (cited on 31 May
2005): |
|
| 90 | Corley,
S., and Jacobson, T.A., “Black hole lasers”, Phys. Rev. D, 59,
124011-1-12, (1999). Related online version (cited on 31 May
2005): |
|
| 91 | Corley, S.R., The role of short distance physics in the Hawking effect, Ph.D. Thesis, (University of Maryland, College Park, U.S.A., 1997). | |
| 92 | Courant, R., and Hilbert, D., Methods of Mathematical Physics, vol. 2 of Wiley Classics Library, (Interscience, New York, U.S.A., 1989). | |
| 93 | Czerniawski, J., “What is wrong with
Schwarzschild’s coordinates?”, (2002). URL (cited on 31 May
2005): |
|
| 94 | Damour,
T., “The entropy of black holes: A primer”, in Dalibard, J.,
Duplantier, B., and Rivasseau, V., eds., Poincaré Seminar 2003: Bose-Einstein Condensation -
Entropy, Proceedings of the third and fourth Poincaré
Seminars, vol. 38 of Progress in Mathematical Physics,
(Birkhäuser, Basel, Switzerland; Boston, U.S.A., 2004). Related
online version (cited on 31 May 2005): |
|
| 95 | Das, S.,
“Black hole thermodynamics: Entropy, information and beyond”,
Pramana, 63, 797-816, (2004). Related online version (cited
on 31 May 2005): |
|
| 96 | Das, T.K.,
“Analogous Hawking Radiation from Astrophysical Black Hole
Accretion”, (2004). URL (cited on 31 May 2005): |
|
| 97 | Das, T.K.,
“Analogue Hawking radiation from astrophysical black hole
accretion”, Class. Quantum Grav., 21,
5253-5260, (2004). Related online version (cited on 31 May
2005): |
|
| 98 | Das, T.K.,
“Transonic Black Hole Accretion as Analogue System”, (2004). URL
(cited on 31 May 2005): |
|
| 99 | Davies, P.C.W., Fulling, S.A., and Unruh, W.G., “Energy momentum tensor near an evaporating black hole”, Phys. Rev. D, 13, 2720-2723, (1976). | |
| 100 | de Felice, F., “On the gravitational field acting as an optical medium”, Gen. Relativ. Gravit., 2, 347-357, (1971). | |
| 101 | De Lorenci, V.A., and Klippert, R.,
“Analogue gravity from electrodynamics in nonlinear media”,
Phys. Rev. D, 65, 064027-1-6, (2002). Related online version
(cited on 31 May 2005): |
|
| 102 | De Lorenci, V.A., Klippert, R., Novello, M., and Salim, J.M., “Nonlinear electrodynamics and FRW cosmology”, Phys. Rev. D, 65, 063501-1-5, (2002). | |
| 103 | De Lorenci, V.A., Klippert, R., and
Obukhov, Y.N., “On optical black holes in moving dielectrics”,
Phys. Rev. D, 68, 061502-1-4, (2003). Related online version
(cited on 31 May 2005): |
|
| 104 | Donley, E.A.,
Claussen, N.R., Cornish, S.L., Roberts, J.L., Cornell, E.A., and
Wieman, C.E., “Dynamics of collapsing and exploding Bose-Einstein
condensates”, Nature, 412, 295-299, (2001). Related online version
(cited on 31 May 2005): |
|
| 105 | Dumin,
Y.V., “Topological defect density in 1D FRW cosmological model:
Corrections inferred from the MJJL experiment”, (2003). URL (cited
on 31 May 2005): |
|
| 106 | Dziarmaga, J., “Analog electromagnetism in a
symmetrized 3He-A”, (2001). URL (cited on 31 May 2005): |
|
| 107 | Easther,
R., Greene, B.R., Kinney, W.H., and Shiu, G., “Inflation as a probe
of short distance physics”, Phys. Rev.
D, 64, 103502-1-8, (2001).
Related online version (cited on 31 May 2005): |
|
| 108 | Ellis,
G.F.R., and Uzan, J.-P., “ ‘c’ is the
speed of light, isn’t it?”, Am. J.
Phys., 73, 240-247, (2005).
Related online version (cited on 31 May 2005): |
|
| 109 | Ellis, J.R.,
Mavromatos, N.E., Nanopoulos, D.V., and Volkov, G.,
“Gravitational-recoil effects on fermion propagation in space-time
foam”, Gen. Relativ. Gravit.,
32, 1777-1798, (2000). Related online
version (cited on 31 May 2005): |
|
| 110 | Eltsov,
V.B., Krusius, M., and Volovik, G.E., “Superfluid 3He: A Laboratory
model system of quantum field theory”, (1998). URL (cited on 31 May
2005): |
|
| 111 | Englert, F., “The Black hole history in tamed
vacuum”, (1994). URL (cited on 31 May 2005): |
|
| 112 | Englert,
F., Massar, S., and Parentani, R., “Source vacuum fluctuations of
black hole radiance”, Class. Quantum
Grav., 11, 2919-2938, (1994).
Related online version (cited on 31 May 2005): |
|
| 113 | Federici, F., Cherubini, C., Succi, S., and Tosi,
M.P., “Superradiance from BEC vortices: a numerical study”, (2005).
URL (cited on 31 May 2005): |
|
| 114 | Fedichev, P.O., and Fischer, U.R.,
“Gibbons-Hawking Effect in the Sonic de Sitter Space-Time of an
Expanding Bose-Einstein-Condensed Gas”, Phys.
Rev. Lett., 91, 240407, (2003).
Related online version (cited on 31 May 2005): |
|
| 115 | Fedichev, P.O., and Fischer, U.R., “
“Cosmological” quasiparticle production in harmonically trapped
superfluid gases”, Phys. Rev. A,
69, 033602, (2004). Related online
version (cited on 31 May 2005): |
|
| 116 | Fedichev, P.O., and Fischer, U.R., “Observer
dependence for the phonon content of the sound field living on the
effective curved space-time background of a Bose-Einstein
condensate”, Phys. Rev. D, 69, 064021,
(2004). Related online version (cited on 31 May 2005): |
|
| 117 | Fischer, U.R., “Motion of quantized vortices as
elementary objects”, Ann. Phys.
(N.Y.), 278, 62-85, (1999).
Related online version (cited on 31 May 2005): |
|
| 118 | Fischer,
U.R., “Quasiparticle universes in Bose-Einstein condensates”,
Mod. Phys. Lett. A, 19, 1789-1812, (2004). Related online version
(cited on 31 May 2005): |
|
| 119 | Fischer,
U.R., and Schützhold, R., “Quantum simulation of cosmic inflation
in two-component Bose-Einstein condensates”, Phys. Rev. A, 70,
063615, (2004). Related online version (cited on 31 May
2005): |
|
| 120 | Fischer,
U.R., and Visser, M., “Riemannian geometry of irrotational vortex
acoustics”, Phys. Rev. Lett., 88,
110201-1-4, (2002). Related online version (cited on 31 May
2005): |
|
| 121 | Fischer,
U.R., and Visser, M., “On the space-time curvature experienced by
quasiparticle excitations in the Painleve-Gullstrand effective
geometry”, Ann. Phys. (N.Y.),
304, 22-39, (2003). Related online
version (cited on 31 May 2005): |
|
| 122 | Fischer, U.R., and Visser, M., “Warped
space-time for phonons moving in a perfect nonrelativistic fluid”,
Europhys. Lett., 62, 1-7, (2003). Related online version (cited on
31 May 2005): |
|
| 123 | Fischer,
U.R., and Volovik, G.E., “Thermal quasi-equilibrium states across
Landau horizons in the effective gravity of superfluids”,
Int. J. Mod. Phys. D, 10, 57-88, (2001). Related online version (cited
on 31 May 2005): |
|
| 124 | Fiurásek, J., Leonhardt, U., and Parentani,
R., “Slow-light pulses in moving media”, Phys. Rev. A,
65, 011802-1-4, (2002). Related online
version (cited on 31 May 2005): |
|
| 125 | Fock, V.A., The Theory of Space, Time, and Gravitation, (Pergamon, New York, U.S.A., 1964), 2nd edition. | |
| 126 | Fonseca-Barbatti, C., Novello, M., Salim, J.M., and Arcuri, R.C., “Creation of a wormhole due to nonlinear electrodynamics”, Mod. Phys. Lett. A, 17, 1305-1314, (2002). | |
| 127 | Ford, L.H.,
“Quantum field theory in curved spacetime”, (1997). URL (cited on
31 May 2005): |
|
| 128 | Ford, L.H., and
Svaiter, N.F., “Cosmological and black hole horizon fluctuations”,
Phys. Rev. D, 56, 2226-2235,
(1997). Related online version (cited on 31 May 2005): |
|
| 129 | Friedan, D., “A tentative theory of large distance
physics”, J. High Energy Phys.,
2003(10), 063, (2003). Related online
version (cited on 31 May 2005): |
|
| 130 | Frolov,
V.P., “Black Hole Entropy and Physics at Planckian Scales”, in
Sánchez, N., and Zichichi, A., eds., String
gravity and physics at the Planck energy scale, Proceedings
of the NATO Advanced Study Institute on String Gravity and Physics
at the Planck Energy Scale, Erice, Italy, September 18-19, 1995,
vol. 476 of NATO ASI series. Series C, Mathematical and physical
sciences, (Kluwer Academic Publishers, Dordrecht, Netherlands;
Boston, U.S.A., 1996). Related online version (cited on 31 May
2005): |
|
| 131 | Frolov,
V.P., and Larsen, A.L., “Stationary strings and 2-D black holes”,
Nucl. Phys. B, 449, 149-158, (1995). Related online version
(cited on 31 May 2005): |
|
| 132 | Fulling, S.A., Aspects of Quantum Field Theory in Curved Space-Time, (Cambridge University Press, Cambridge, U.K.; New York, U.S.A., 1989). | |
| 133 | Furtado,
C., M de Carvalho, A.M., Garcia de Andrade, L.C., and
Moraes, F., “Holonomy, Aharonov-Bohm effect and phonon scattering
in superfluids”, (2004). URL (cited on 31 May 2005): |
|
| 134 | Gambini,
R., and Pullin, J., “Nonstandard optics from quantum space-time”,
Phys. Rev. D, 59, 124021-1-4, (1999). Related online version
(cited on 31 May 2005): |
|
| 135 | Garay, L.J.,
“Quantum gravity and minimum length”, Int. J.
Mod. Phys. A, 10, 145-166,
(1995). Related online version (cited on 31 May 2005): |
|
| 136 | Garay, L.J.,
Anglin, J.R., Cirac, J.I., and Zoller, P., “Sonic Analog of
Gravitational Black Holes in Bose-Einstein Condensates”,
Phys. Rev. Lett., 85, 4643-1-5, (2000). Related online version
(cited on 31 May 2005): |
|
| 137 | Garay, L.J.,
Anglin, J.R., Cirac, J.I., and Zoller, P., “Sonic black holes in
dilute Bose-Einstein condensates”, Phys. Rev.
A, 63, 023611-1-13, (2001).
Related online version (cited on 31 May 2005): |
|
| 138 | Garcia de Andrade, L.C.,
“Irrotational vortex geometry of torsion loops”, (2004). URL (cited
on 31 May 2005): |
|
| 139 | Garcia de Andrade, L.C.,
“Non-Riemannian acoustic black holes: Hawking radiation and Lorentz
symmetry breaking”, (2004). URL (cited on 31 May 2005): |
|
| 140 | Garcia de Andrade, L.C.,
“Non-Riemannian geometry of turbulent acoustic flows and analog
gravity”, (2004). URL (cited on 31 May 2005): |
|
| 141 | Garcia de Andrade, L.C.,
“Non-Riemannian geometry of vortex acoustics”, Phys. Rev. D, 70,
064004, (2004). Related online version (cited on 31 May
2005): |
|
| 142 | Garcia de Andrade, L.C.,
“Non-Riemannian vortex geometry of rotational viscous fluids and
breaking of the acoustic Lorentz invariance”, (2004). URL (cited on
31 May 2005): |
|
| 143 | Garcia de Andrade, L.C., “On the
necessity of non-Riemannian acoustic spacetime in fluids with
vorticity”, Phys. Lett. A,
346, 327-329, (2005). Related online
version (cited on 31 May 2005): |
|
| 144 | Garcia de Andrade, L.C.,
“Relativistic superfluid hydrodynamics”, (2005). URL (cited on 31
May 2005): |
|
| 145 | Garcia de Andrade, L.C.,
de M Carvalho, A.M., and Furtado, C., “Geometric phase
for fermionic quasiparticles scattering by disgyration in
superfluids”, Europhys. Lett.,
67, 538-544, (2004). Related online
version (cited on 31 May 2005): |
|
| 146 | Ghafarnejad, H., and Salehi, H., “Hadamard
renormalization, conformal anomaly and cosmological event
horizons”, Phys. Rev. D, 56, 4633-4639, (1997). Related online version
(cited on 31 May 2005): |
|
| 147 | Gibbons, G.W., and Hawking, S.W., “Action integrals and partition functions in quantum gravity”, Phys. Rev. D, 15, 2752-2756, (1977). | |
| 148 | Giovanazzi, S., “Hawking Radiation in Sonic
Black Holes”, Phys. Rev. Lett.,
94, 061302-1-4, (2005). Related online
version (cited on 31 May 2005): |
|
| 149 | Giovanazzi, S., Farrell, C., Kiss, T., and
Leonhardt, U., “Conditions for one-dimensional supersonic flow of
quantum gases”, (2004). URL (cited on 31 May 2005): |
|
| 150 | Glass, E.N.,
and Krisch, J.P., “Schwarzschild atmospheric processes: A classical
path to the quantum”, Gen. Relativ.
Gravit., 32, 735-741, (2000).
Related online version (cited on 31 May 2005): |
|
| 151 | Gordon, W., “Zur Lichtfortpflanzung nach der Relativitätstheorie”, Ann. Phys. (Leipzig), 72, 421-456, (1923). | |
| 152 | Górski,
A.Z., and Szmigielski, J., “On Pairs of Difference Operators
Satisfying: [D,X]=Id”, J. Math. Phys., 39,
545-568, (1998). Related online version (cited on 31 May
2005): |
|
| 153 | Griffin, A., Excitations in a Bose-condensed Liquid, vol. 4 of Cambridge Studies in Low Temperature Physics, (Cambridge University Press, Cambridge, U.K.; New York, U.S.A., 1993). | |
| 154 | Gullstrand, A., “Allgemeine Lösung des statischen Einkörperproblems in der Einsteinschen Gravitationstheorie”, Ark. Mat. Astron. Fys., 16(8), 1-15, (1922). | |
| 155 | Hadamard, J., Leçons sur la propagation des ondes et les équations de l’hydrodynamique (Lectures on the propagation of waves and the equations of hydrodynamics), (Hermann, Paris, France, 1903). | |
| 156 | Hambli, N.,
and Burgess, C.P., “Hawking radiation and ultraviolet regulators”,
Phys. Rev. D, 53, 5717-5722, (1996). Related online version
(cited on 31 May 2005): |
|
| 157 | Hamilton, A.J.S., and Lisle, J.P., “The river
model of black holes”, (2004). URL (cited on 31 May
2005): |
|
| 158 | Hassan,
S.F., and Sloth, M.S., “Trans-Planckian effects in inflationary
cosmology and the modified uncertainty principle”, Nucl. Phys. B, 674,
434-458, (2003). Related online version (cited on 31 May
2005): |
|
| 159 | Hawking, S.W., “Black hole explosions?”, Nature, 248, 30-31, (1974). | |
| 160 | Hawking,
S.W., “Particle creation by black holes”, Commun. Math. Phys., 43, 199-220, (1975). Related online version (cited
on 31 May 2005): |
|
| 161 | Hawking, S.W., “Chronology protection conjecture”, Phys. Rev. D, 46, 603-611, (1992). | |
| 162 | Hawking, S.W., “The Chronology Protection Conjecture”, in Sato, H., and Nakamura, T., eds., The Sixth Marcel Grossmann Meeting: on recent developments in theoretical and experimental general relativity, gravitation and relativistic field theories, Proceedings of the meeting held at Kyoto International Conference Hall, Kyoto, Japan, 23-29 June 1991, 3-16, (World Scientific, Singapore, 1992). | |
| 163 | Hawking, S.W., “Chronology protection: Making the world safe for historians”, in Hawking, S.W. et al., ed., The Future of Spacetime, 87-108, (Norton, New York, U.S.A., 2002). | |
| 164 | Hawking, S.W., and Ellis, G.F.R., The Large Scale Structure of Space-Time, Cambridge Monographs on Mathematical Physics, (Cambridge University Press, Cambridge, U.K., 1973). | |
| 165 | Hehl, F.W., and
Obukhov, Y.N., “To consider the electromagnetic field as
fundamental, and the metric only as a subsidiary field”,
Found. Phys., submitted, (2004).
Related online version (cited on 31 May 2005): |
|
| 166 | Hehl, F.W., and
Obukhov, Y.N., “Linear media in classical electrodynamics and the
Post constraint”, Phys. Lett. A,
334, 249-259, (2005). Related online
version (cited on 31 May 2005): |
|
| 167 | Helfer,
A.D., “Trans-Planckian modes, back-reaction, and the Hawking
process”, (2000). URL (cited on 31 May 2005): |
|
| 168 | Helfer,
A.D., “Do black holes radiate?”, Rep. Prog.
Phys., 66, 943-1008, (2003).
Related online version (cited on 31 May 2005): |
|
| 169 | Helfer,
A.D., “State reduction and energy extraction from black holes”,
Phys. Lett. A, 329, 277-283, (2004). Related online version
(cited on 31 May 2005): |
|
| 170 | Himemoto, Y., and Tanaka, T., “A
generalization of the model of Hawking radiation with modified high
frequency dispersion relation”, Phys. Rev.
D, 61, 064004-1-18, (2000).
Related online version (cited on 31 May 2005): |
|
| 171 | Ho, P.-M.,
“Regularization of Newton constant, trans-Planckian dispersion
relation, and symmetry of particle spectrum”, Class. Quantum Grav., 21, 2641-2650, (2004). Related online version
(cited on 31 May 2005): |
|
| 172 | Hochberg, D., “Evaporating black holes and collapsing bubbles in fluids”, unknown status, (1997). | |
| 173 | Hochberg, D., and Pérez-Mercader, J., “A
Liquid Model Analogue for Black Hole Thermodynamics”, Phys. Rev. D, 55,
4880-4888, (1997). Related online version (cited on 31 May
2005): |
|
| 174 | Horwitz,
L.P., and Oron, O., “Classical Gravity as an Eikonal Approximation
to a Manifestly Lorentz Covariant Quantum Theory with Brownian
Interpretation”, in Reimer, A., ed., Quantum
Gravity Research Trends, vol. 250 of Horizons in World
Physics, (Nova Science, New York, U.S.A., 2005). Related online
version (cited on 31 May 2005): |
|
| 175 | Hossenfelder, S., “The minimal length and
large extra dimensions”, Mod. Phys. Lett.
A, 19, 2727-2744, (2004).
Related online version (cited on 31 May 2005): |
|
| 176 | Hossenfelder, S., “Running coupling with
minimal length”, Phys. Rev. D,
70, 105003, (2004). Related online
version (cited on 31 May 2005): |
|
| 177 | Hu, B.L., “Dynamical finite size effect, inflationary cosmology and thermal particle production”, in Lee, H.C., ed., CAP-NSERC Summer Institute in Theoretical Physics, 2 vols., Edmonton, Alberta, Jul 10-25, 1987, (World Scientific, Singapore; Teaneck, U.S.A., 1988). | |
| 178 | Hu, B.L.,
“Nonequilibrium quantum fields in cosmology: Comments on selected
current topics”, in De Vega, H.J., and Sánchez, N., eds.,
Second Paris Cosmology Colloquium,
Proceedings of the 2nd Paris Cosmology Colloquium Within the
Framework of the International School of Astrophysics, 2-4 June,
1994, Observatoire de Paris, France, 111, (World Scientific,
Singapore; River Edge, U.S.A., 1995). Related online version (cited
on 31 May 2005): |
|
| 179 | Hu, B.L.,
“Stochastic gravity”, Int. J. Theor.
Phys., 38, 2987-3037, (1999).
Related online version (cited on 31 May 2005): |
|
| 180 | Hu, B.L., and
Verdaguer, E., “Stochastic gravity: A primer with applications”,
Class. Quantum Grav., 20, R1-R42,
(2003). Related online version (cited on 31 May 2005): |
|
| 181 | Hu, B.L., and
Verdaguer, E., “Stochastic Gravity: Theory and Applications”,
Living Rev. Relativity, 7,
lrr-2004-3, (2004). URL (cited on 31 May 2005): http://www.livingreviews.org/lrr-2004-3. |
|
| 182 | Huhtala,
P., and Volovik, G.E., “Fermionic microstates within
Painleve-Gullstrand black hole”, J. Exp.
Theor. Phys., 94, 853-861,
(2002). Related online version (cited on 31 May 2005): |
|
| 183 | Israel, W., “Dark stars: the evolution of an idea”, in Hawking, S.W., and Israel, W., eds., Three Hundred Years of Gravitation, 199-276, (Cambridge University Press, Cambridge, U.K.; New York, U.S.A., 1987). see especially the discussion on page 234. | |
| 184 | Ito, K., and Ugakkai, N.S., eds., Encyclopedic Dictionary of Mathematics, (MIT, Cambridge, U.S.A., 1987), 2nd edition. | |
| 185 | Jacobson, T.A., “Black hole evaporation and ultrashort distances”, Phys. Rev. D, 44, 1731-1739, (1991). | |
| 186 | Jacobson, T.A., “Black hole radiation in the
presence of a short distance cutoff”, Phys.
Rev. D, 48, 728-741, (1993). Related online version (cited
on 31 May 2005): |
|
| 187 | Jacobson, T.A., “Introduction to Black Hole
Microscopy”, in Macías, A., Quevedo, H., Obregón, O., and Matos,
T., eds., Recent Developments in Gravitation
and Mathematical Physics,
Proceedings of the First Mexican School on Gravitation and
Mathematical Physics, Guanajuato, Mexico, 12-16 December 1994,
(World Scientific, Singapore; River Edge, U.S.A., 1996). Related
online version (cited on 31 May 2005): |
|
| 188 | Jacobson, T.A., “On the origin of the
outgoing black hole modes”, Phys. Rev.
D, 53, 7082-7088, (1996).
Related online version (cited on 31 May 2005): |
|
| 189 | Jacobson, T.A., “Trans-Planckian redshifts
and the substance of the space-time river”, Prog. Theor. Phys.
Suppl., 136, 1-17, (1999).
Related online version (cited on 31 May 2005): |
|
| 190 | Jacobson, T.A., “Lorentz violation and
Hawking radiation”, (2001). URL (cited on 31 May 2005): |
|
| 191 | Jacobson, T.A., “Introduction to quantum
fields in curved spacetime and the Hawking effect”, (2003). URL
(cited on 31 May 2005): |
|
| 192 | Jacobson, T.A., and Kang, G., “Conformal
invariance of black hole temperature”, Class. Quantum Grav.,
10, L201-L206, (1993). Related online
version (cited on 31 May 2005): |
|
| 193 | Jacobson, T.A., and Koike, T., “Black hole and baby
universe in a thin film of 3He-A”, in Novello, M., Visser, M., and
Volovik, G., eds., Artificial Black
Holes, 87-108, (World Scientific, Singapore; River Edge,
U.S.A., 2002). Related online version (cited on 31 May
2005): |
|
| 194 | Jacobson, T.A., Liberati, S., and Mattingly,
D., “Lorentz violation and Crab synchrotron emission: A new
constraint far beyond the Planck scale”, Nature, 424,
1019-1021, (2003). Related online version (cited on 31 May
2005): |
|
| 195 | Jacobson, T.A., Liberati, S., and Mattingly,
D., “Threshold effects and Planck scale Lorentz violation: Combined
constraints from high energy astrophysics”, Phys. Rev. D, 67,
124011-1-26, (2003). Related online version (cited on 31 May
2005): |
|
| 196 | Jacobson, T.A., Liberati, S., and Mattingly,
D., “Astrophysical bounds on Planck suppressed Lorentz violation”,
(2004). URL (cited on 31 May 2005): |
|
| 197 | Jacobson, T.A., Liberati, S., and Mattingly,
D., “Quantum gravity phenomenology and Lorentz violation”, in
Trampetić, J., and Wess, J., eds., Particle
Physics and the Universe, Proceedings of the 9th Adriatic
Meeting, September 2003, Dubrovnik, vol. 98 of Springer
Proceedings in Physics, (Springer, Berlin, Germany; New York,
U.S.A., 2005). Related online version (cited on 31 May
2005): |
|
| 198 | Jacobson, T.A., and Mattingly, D., “Hawking
radiation on a falling lattice”, Phys. Rev.
D, 61, 024017-1-10, (2000).
Related online version (cited on 31 May 2005): |
|
| 199 | Jacobson, T.A., and Volovik, G.E., “Effective
spacetime and Hawking radiation from moving domain wall in thin
film of 3He-A”, J. Exp. Theor. Phys.
Lett., 68, 874-880, (1998).
Related online version (cited on 31 May 2005): |
|
| 200 | Jacobson, T.A., and Volovik, G.E., “Event horizons and ergoregions in 3He”, Phys. Rev. D, 58, 064021-1-7, (1998). | |
| 201 | Jevicki, A., and Thaler, J., “Dynamics of black
hole formation in an exactly solvable model”, Phys. Rev. D, 66,
024041-1-6, (2002). Related online version (cited on 31 May
2005): |
|
| 202 | Kagan, Y., Surkov, E.L., and Shlyapnikov, G.V., “Evolution of a Bose-condensed gas under variations of the confining potential”, Phys. Rev. A, 54, R1753-R1756, (1996). | |
| 203 | Kagan, Y.,
Surkov, E.L., and Shlyapnikov, G.V., “Evolution and global collapse
of trapped Bose condensates under variations of the scattering
length”, Phys. Rev. Lett.,
79, 2604-2607, (1997). Related online
version (cited on 31 May 2005): |
|
| 204 | Kash, M.M., Sautenkov, V.A., Zibrov, A.S., Hollberg, L., Welch, G.R., Lukin, M.D., Rostovtsev, Y., Fry, E.S., and Scully, M.O., “Ultraslow Group Velocity and Enhanced Nonlinear Optical Effects in a Coherently Driven Hot Atomic Gas”, Phys. Rev. Lett., 82, 5229-5232, (1999). | |
| 205 | Kempf, A.,
“Mode generating mechanism in inflation with a cutoff”,
Phys. Rev. D, 63, 083514-1-5, (2001). Related online version
(cited on 31 May 2005): |
|
| 206 | Kempf, A., “A
covariant information-density cutoff in curved space-time”,
Phys. Rev. Lett., 92, 221301, (2004). Related online version (cited
on 31 May 2005): |
|
| 207 | Kempf, A.,
and Niemeyer, J.C., “Perturbation spectrum in inflation with
cutoff”, Phys. Rev. D, 64, 103501-1-6,
(2001). Related online version (cited on 31 May 2005): |
|
| 208 | Kim, S.-W., and
Oh, John J., “Decay rate and low-energy near-horizon dynamics
of acoustic black holes”, Phys. Lett.
B, 608, 10-16, (2005). Related
online version (cited on 31 May 2005): |
|
| 209 | Kim, W.T.,
Son, E.J., and Yoon, M.S., “Statistical entropy and superradiance
in 2+1 dimensional acoustic black holes”, (2005). URL (cited on 31
May 2005): |
|
| 210 | Kiss, T., and
Leonhardt, U., “Towards a classification of wave catastrophes”,
(2003). URL (cited on 31 May 2005): |
|
| 211 | Kocharovskaya, O., Rostovtsev, Y., and Scully, M.O., “Stopping Light via Hot Atoms”, Phys. Rev. Lett., 86, 628-631, (2001). | |
| 212 | Kokkotas, K.D., and Schmidt, B.G.,
“Quasi-Normal Modes of Stars and Black Holes”, Living Rev.
Relativity, 2, lrr-1999-2,
(1999). URL (cited on 31 May 2005): http://www.livingreviews.org/lrr-1999-2. |
|
| 213 | Kopnin,
N.B., and Volovik, G.E., “Critical velocity and event horizon in
pair-correlated systems with relativistic fermionic
quasiparticles”, J. Exp. Theor. Phys.
Lett., 67, 528-532, (1998).
Related online version (cited on 31 May 2005): |
|
| 214 | Kostelecký, V.A., and Samuel, S., “Spontaneous breaking of Lorentz symmetry in string theory”, Phys. Rev. D, 39, 683-685, (1989). | |
| 215 | Kowalski-Glikman, J., “Testing
dispersion relations of quantum kappa-Poincare algebra on
cosmological ground”, Phys. Lett. B,
499, 1-8, (2001). Related online
version (cited on 31 May 2005): |
|
| 216 | Kowalski-Glikman, J., “De Sitter
space as an arena for doubly special relativity”, Phys. Lett. B,
547, 291-296, (2002). Related online
version (cited on 31 May 2005): |
|
| 217 | Kowalski-Glikman, J., “Doubly special
relativity: A kinematics of quantum gravity?”, in Semikhatov, A.
et al., ed., Proceedings of the 3rd
International Sakharov Conference on Physics, 2 vols., Moscow, Russia, June 24-29,
2002, (Scientific World, Moscow, Russia, 2002). Related online
version (cited on 31 May 2005): |
|
| 218 | Kraus, P.,
and Wilczek, F., “A Simple stationary line element for the
Schwarzschild Geometry, and some applications”, (June, 1994). URL
(cited on 31 May 2005): |
|
| 219 | Lamb, H., Hydrodynamics, (Dover, Mineola, U.S.A., 1932), 6th edition. Reissue of 1932 ed., first edition publ. 1879. | |
| 220 | Lämmerzahl, C., and Hehl, F.W., “Riemannian
light cone from vanishing birefringence in premetric vacuum
electrodynamics”, Phys. Rev. D,
70, 105022-1-10, (2004). Related
online version (cited on 31 May 2005): |
|
| 221 | Landau, L.D., and Lifshitz, E.M., Fluid Mechanics, (Pergamon; Addison-Wesley, London, U.K.; Reading, U.S.A., 1959). | |
| 222 | Landau, L.D., and Lifshitz, E.M., The classical theory of fields, (Pergamon Press, Oxford, U.K.; New York, U.S.A., 1971), 3rd edition. | |
| 223 | Landau, L.D., Lifshitz, E.M., and Pitaevskii, L.P., Statistical Physics, Part 2, vol. 9 of Course of Theoretical Physics, (Pergamon Press, Oxford, U.K.; New York, U.S.A., 1980). | |
| 224 | Landau, L.D., Lifshitz, E.M., and Pitaevskii, L.P., Electrodynamics of continuous media, vol. 8 of Course of Theoretical Physics, (Pergamon Press, Oxford, U.K.; New York, U.S.A., 1984), 2nd edition. | |
| 225 | Larsen,
A.L., “Cosmic strings and black holes”, (1996). URL (cited on 31
May 2005): |
|
| 226 | Laschkarew, W., “Zur Theorie der Gravitation”, Z. Phys., 35, 473-476, (1926). | |
| 227 | Laughlin, R.B., “Emergent relativity”,
Int. J. Mod. Phys. A, 18, 831-854, (2003). Related online version (cited
on 31 May 2005): |
|
| 228 | Lemaître, G., “L’univers en expansion”, Ann. Soc. Sci. Bruxelles, Ser. A, 53, 51-85, (1933). | |
| 229 | Lemoine,
M., Lubo, M., Martin, J., and Uzan, J.-P., “Stress-energy tensor
for trans-Planckian cosmology”, Phys. Rev.
D, 65, 023510-1-14, (2002).
Related online version (cited on 31 May 2005): |
|
| 230 | Lemoine,
M., Martin, J., and Uzan, J.-P., “Trans-Planckian dark energy?”,
Phys. Rev. D, 67, 103520-1-13, (2003). Related online version
(cited on 31 May 2005): |
|
| 231 | Leonhardt, U., “Space-time geometry of
quantum dielectrics”, Phys. Rev. A,
62, 012111-1-8, (2000). Related online
version (cited on 31 May 2005): |
|
| 232 | Leonhardt, U., “Slow Light”, in Novello, M.,
Visser, M., and Volovik, G., eds., Artificial
Black Holes, 61-85, (World
Scientific, Singapore; River Edge, U.S.A., 2002). Related online
version (cited on 31 May 2005): |
|
| 233 | Leonhardt, U., “Quantum physics of simple
optical instruments”, Rep. Prog.
Phys., 66, 1207-1250, (2003).
Related online version (cited on 31 May 2005): |
|
| 234 | Leonhardt, U., Kiss, T., and Öhberg, P., “Intrinsic
instability of sonic white holes”, (2002). URL (cited on 31 May
2005): |
|
| 235 | Leonhardt, U., and Piwnicki, P.,
“Relativistic Effects of Light in Moving Media with Extremely Low
Group Velocity”, Phys. Rev. Lett.,
84, 822-825, (2000). Related online
version (cited on 31 May 2005): |
|
| 236 | Leonhardt, U., and Piwnicki, P., “Reply to
Comment on “Relativistic Effects of Light in Moving Media with
Extremely Low Group Velocity” by M. Visser”, Phys. Rev. Lett., 85,
5253, (2000). Related online version (cited on 31 May
2005): |
|
| 237 | Lepe, S., and
Saavedra, J., “Quasinormal modes, superradiance and area spectrum
for 2+1 acoustic black holes”, Phys. Lett.
B, 617, 174-181, (2005).
Related online version (cited on 31 May 2005): |
|
| 238 | Liberati, S., Quantum
vacuum effects in gravitational fields: Theory and
detectability, Ph.D. Thesis, (International School for
Advanced Studies, Trieste, Italy, 2000). Related online version
(cited on 31 May 2005): |
|
| 239 | Liberati, S., Sonego, S., and Visser, M.,
“Unexpectedly large surface gravities for acoustic horizons?”,
Class. Quantum Grav., 17, 2903-2923, (2000). Related online version
(cited on 31 May 2005): |
|
| 240 | Liberati, S., Sonego, S., and Visser, M.,
“Scharnhorst effect at oblique incidence”, Phys. Rev. D,
63, 085003-1-10, (2001). Related
online version (cited on 31 May 2005): |
|
| 241 | Liberati, S., Sonego, S., and Visser, M.,
“Faster-than-c signals, special
relativity, and causality”, Ann. Phys.
(N.Y.), 298, 167-185, (2002).
Related online version (cited on 31 May 2005): |
|
| 242 | Lidsey,
J.E., “Cosmic dynamics of Bose-Einstein condensates”, Class. Quantum Grav., 21, 777-786, (2004). Related online version (cited
on 31 May 2005): |
|
| 243 | Lubo, M.,
“Quantum minimal length and trans-Planckian photons”, Phys. Rev. D, 61,
124009-1-1, (2000). Related online version (cited on 31 May
2005): |
|
| 244 | Lubo, M.,
“Ultraviolet cut off, black hole-radiation equilibrium and big
bang”, Phys. Rev. D, 68, 125005, (2003). Related online version (cited
on 31 May 2005): |
|
| 245 | Lubo, M.,
“Ultraviolet cutoff and bosonic dominance”, Phys. Rev. D, 68,
125004-1-9, (2003). Related online version (cited on 31 May
2005): |
|
| 246 | M de Carvalho, A.M., Moraes, F., and
Furtado, C., “The self-energy of a charged particle in the presence
of a topological defect distribution”, Int.
J. Mod. Phys. A, 19, 2113-2122,
(2004). Related online version (cited on 31 May 2005): |
|
| 247 | Magueijo, J., and Smolin, L., “Lorentz
Invariance with an Invariant Energy Scale”, Phys. Rev. Lett.,
88, 190403-1-4, (2002). Related online
version (cited on 31 May 2005): |
|
| 248 | Martin, J.,
“Inflationary cosmological perturbations of quantum-mechanical
origin”, in Amelino-Camelia, G., and Kowalski-Glikman, J., eds.,
Planck Scale Effects in Astrophysics
and Cosmology, 40th Karpacz
Winter School of Theoretical Physics, Ladek Zdrój, Poland, 4-14
February 2004, vol. 669 of Lecture Notes in Physics, (Springer,
Berlin, Germany; New York, U.S.A., 2004). Related online version
(cited on 31 May 2005): |
|
| 249 | Martin,
J., and Brandenberger, R.H., “A Cosmological Window on
Trans-Planckian Physics”, (2001). URL (cited on 31 May
2005): |
|
| 250 | Martin, J.,
and Brandenberger, R.H., “Trans-Planckian problem of inflationary
cosmology”, Phys. Rev. D, 63, 123501-1-16, (2001). Related online version
(cited on 31 May 2005): |
|
| 251 | Martin, J.,
and Brandenberger, R.H., “Corley-Jacobson dispersion relation and
trans-Planckian inflation”, Phys. Rev.
D, 65, 103514-1-5, (2002).
Related online version (cited on 31 May 2005): |
|
| 252 | Martin, J.,
and Brandenberger, R.H., “Dependence of the spectra of fluctuations
in inflationary cosmology on trans-Planckian physics”, Phys. Rev. D, 68,
063513-1-16, (2003). Related online version (cited on 31 May
2005): |
|
| 253 | Massar, S.,
“The semiclassical back reaction to black hole evaporation”,
Phys. Rev. D, 52, 5857-5864, (1995). Related online version
(cited on 31 May 2005): |
|
| 254 | Massar, S.,
and Parentani, R., “From Vacuum Fluctuations to Radiation:
Accelerated Detectors and Black Holes”, (1994). URL (cited on 31
May 2005): |
|
| 255 | Massar, S., and Parentani, R., “From vacuum fluctuations to radiation. 2. Black holes”, Phys. Rev. D, 54, 7444-7458, (1996). | |
| 256 | Massar, S.,
and Parentani, R., “From vacuum fluctuations to radiation:
Accelerated detectors and black holes”, Phys.
Rev. D, 54, 7426-7443, (1996).
Related online version (cited on 31 May 2005): |
|
| 257 | Massar,
S., and Parentani, R., “How the change in horizon area drives black
hole evaporation”, Nucl. Phys. B,
575, 333-356, (2000). Related online
version (cited on 31 May 2005): |
|
| 258 | Matarrese, S., “On the classical and quantum irrotational motions of a relativistic perfect fluid: I. Classical Theory”, Proc. R. Soc. London, Ser. A, 401, 53-66, (1985). | |
| 259 | Matarrese, S., “Perturbations of an irrotational perfect fluid”, in Fabbri, R., and Modugno, M., eds., Atti del VI Convegno Nazionale di Relatività Generale e Fisica della Gravitazione, Proceedings of the 4th Italian conference on general relativity and the physics of gravitation, Florence, Italy, 10-13 October 1984, 283-287, (Pitagora Editrice, Bologna, Italy, 1986). | |
| 260 | Matarrese, S., “Phonons in a relativistic perfect fluid”, in Ruffini, R, ed., The Fourth Marcel Grossmann Meeting on recent developments in theoretical and experimental general relativity, gravitation and relativistic field theories, Proceedings of the meeting held at the University of Rome “La Sapienza”, 17-21 June, 1985, 1591-1595, (North-Holland; Elsevier, Amsterdam, Netherlands; New York, U.S.A., 1986). | |
| 261 | Mattingly, D., “Modern Tests of Lorentz
Invariance”, Living Rev. Relativity,
8, lrr-2005-5, (2005). URL (cited on
31 May 2005): http://www.livingreviews.org/lrr-2005-5. |
|
| 262 | Mersini,
L., “Dark energy from the trans-Planckian regime”, in Khalil, S.,
Shafi, Q., and Tallat, H., eds., International Conference on High Energy Physics,
Proceedings of the International Conference on High Energy Physics,
January 9-14, 2001, Cairo, Egypt, 289-294, (Rinton Press,
Princeton, U.S.A., 2001). Related online version (cited on 31 May
2005): |
|
| 263 | Mersini,
L., Bastero-Gil, M., and Kanti, P., “Relic dark energy from
trans-Planckian regime”, Phys. Rev. D,
64, 043508-1-9, (2001). Related online
version (cited on 31 May 2005): |
|
| 264 | Milne-Thomson, L.M., Theoretical Hydrodynamics, (Macmillan, London, U.K., New York, U.S.A., 1968), 5th edition. | |
| 265 | Misner, C.W., Thorne, K.S., and Wheeler, J.A., Gravitation, (W.H. Freeman, San Francisco, U.S.A., 1973). | |
| 266 | Møller, C., The Theory of Relativity, (Clarendon, Oxford, U.K., 1972), 2nd edition. | |
| 267 | Moncrief, V., “Gravitational perturbations of spherically symmetric systems. I. The exterior problem”, Ann. Phys. (N.Y.), 88, 323-342, (1974). | |
| 268 | Moncrief, V.,
“Stability of stationary, spherical accretion onto a Schwarzschild
black hole”, Astrophys. J.,
235, 1038-1046, (1980). Related online
version (cited on 02 December 2005): |
|
| 269 | Nakano, H.,
Kurita, Y., Ogawa, K., and Yoo, C.-M., “Quasinormal ringing for
acoustic black holes at low temperature”, Phys. Rev. D, 71,
084006-1-7, (2005). Related online version (cited on 31 May
2005): |
|
| 270 | Nandi, K.K.,
and Xu, D.H., “Unruh model for the Einstein-Rosen charge: Squealing
wormholes?”, (2004). URL (cited on 31 May 2005): |
|
| 271 | Nandi, K.K.,
Zhang, Y.-Z., Alsing, P.M., Evans, J.C., and Bhadra, A., “Analogue
of the Fizeau effect in an effective optical medium”, Phys. Rev. D, 67,
025002-1-11, (2003). Related online version (cited on 31 May
2005): |
|
| 272 | Nandi, K.K.,
Zhang, Y.-Z., and Cai, R.-G., “Acoustic wormholes”, (2004). URL
(cited on 31 May 2005): |
|
| 273 | Niemeyer, J.C., “Inflation with a
Planck-scale frequency cutoff”, Phys. Rev.
D, 63, 123502-1-7, (2001).
Related online version (cited on 31 May 2005): |
|
| 274 | Niemeyer, J.C., “Cosmological consequences of
short distance physics”, (2002). URL (cited on 31 May
2005): |
|
| 275 | Niemeyer, J.C., and Parentani, R.,
“Trans-Planckian dispersion and scale invariance of inflationary
perturbations”, Phys. Rev. D,
64, 101301-1-4, (2001). Related online
version (cited on 31 May 2005): |
|
| 276 | Nikolic,
H., “Time in quantum gravity by weakening the Hamiltonian
constraint”, (2003). URL (cited on 31 May 2005): |
|
| 277 | Nikolic,
H., “Black holes radiate but do not evaporate”, (2004). URL (cited
on 31 May 2005): |
|
| 278 | Novello, M., “Effective geometry in nonlinear electrodynamics”, Int. J. Mod. Phys. A, 17, 4187-4196, (2002). | |
| 279 | Novello,
M., De Lorenci, V.A., Salim, J.M., and Klippert, R.,
“Geometrical aspects of light propagation in nonlinear
electrodynamics”, Phys. Rev. D,
61, 045001-1-10, (2000). Related
online version (cited on 31 May 2005): |
|
| 280 | Novello,
M., and Perez Bergliaffa, S.E., “Effective Geometry”, in
Novello Santiago, M., and Perez Bergliaffa, E., eds.,
Cosmology and Gravitation, Xth
Brazilian School of Cosmology and Gravitation, 25th Anniversary
(1977-2002), Mangaratiba, Rio de Janeiro, Brazil, 29 July - 9
August 2002, vol. 668 of AIP Conference Proceedings, 288-300,
(American Institute of Physics, Melville, U.S.A., 2003). Related
online version (cited on 31 May 2005): |
|
| 281 | Novello,
M., Perez Bergliaffa, S.E., and Salim, J.M., “Nonlinear
electrodynamics and the acceleration of the Universe”, Phys. Rev. D, 69,
127301-1-4, (2004). Related online version (cited on 31 May
2005): |
|
| 282 | Novello,
M., Perez Bergliaffa, S.E., Salim, J.M., De Lorenci,
V.A., and Klippert, R., “Analog black holes in flowing
dielectrics”, Class. Quantum Grav.,
20, 859-871, (2003). Related online
version (cited on 31 May 2005): |
|
| 283 | Novello, M., and Salim, J.M., “Effective electromagnetic geometry”, Phys. Rev. D, 63, 083511-1-4, (2001). | |
| 284 | Novello, M., Visser, M., and Volovik, G., eds., Artificial Black Holes, (World Scientific, Singapore; River Edge, U.S.A., 2002). | |
| 285 | Obadia, N.,
and Parentani, R., “Notes on moving mirrors”, Phys. Rev. D, 64,
044019-1-17, (2001). Related online version (cited on 31 May
2005): |
|
| 286 | Obadia,
N., and Parentani, R., “Uniformly accelerated mirrors. II: Quantum
correlations”, Phys. Rev. D,
67, 024022-1-18, (2003). Related
online version (cited on 31 May 2005): |
|
| 287 | Obukhov,
Y.N., “Black hole hydrodynamics”, (2003). URL (cited on 31 May
2005): |
|
| 288 | Obukhov,
Y.N., and Hehl, F.W., “Spacetime metric from linear
electrodynamics”, Phys. Lett.
B, 458,
466-470, (1999). Related online version (cited on 31 May
2005): |
|
| 289 | Oppenheim, J., “Thermodynamics with
long-range interactions: From Ising models to black holes”,
Phys. Rev. E, 68, 016108-1-17, (2003). Related online version
(cited on 31 May 2005): |
|
| 290 | Oron, O., and
Horwitz, L.P., “Eikonal approximation to 5D wave equations as
geodesic motion in a curved 4D spacetime”, Gen. Relativ. Gravit., 37, 491-506, (2005). Related online version (cited
on 31 May 2005): |
|
| 291 | Padmanabhan, T., “Gravity and the
thermodynamics of horizons”, Phys.
Rep., 406, 49-125, (2003).
Related online version (cited on 31 May 2005): |
|
| 292 | Padmanabhan, T., “Entropy
of Horizons, Complex Paths and Quantum Tunneling”, Mod. Phys. Lett. A,
19, 2637-2643, (2004). Related online
version (cited on 31 May 2005): |
|
| 293 | Painlevé, P., “La mécanique classique et la theorie de la relativité”, C. R. Acad. Sci., 173, 677-680, (1921). | |
| 294 | Parentani, R., “The Recoils of the
accelerated detector and the decoherence of its fluxes”,
Nucl. Phys.
B, 454, 227-249, (1995).
Related online version (cited on 31 May 2005): |
|
| 295 | Parentani, R., “The Recoils of a Dynamical
Mirror and the Decoherence of its Fluxes”, Nucl. Phys. B,
465, 175-214, (1996). Related online
version (cited on 31 May 2005): |
|
| 296 | Parentani, R., “Time dependent perturbation
theory in quantum cosmology”, Nucl. Phys.
B, 492, 501-525, (1997).
Related online version (cited on 31 May 2005): |
|
| 297 | Parentani, R., “The validity of the
background field approximation”, in Burko, L.M., and Ori, A., eds.,
Internal Sructure of Black Holes and Space
Time Singularities, Workshop on The Internal Sructure of
Black Holes and Space Time Singularities, June 29-July 3, 1997,
Haifa, Israel, vol. 13 of Annals of the Israel Physical
Society, (Institute of Physics Publishing, Bristol, U.K.;
Philadelphia, U.S.A., 1997). Related online version (cited on 31
May 2005): |
|
| 298 | Parentani, R., “Hawking radiation from
Feynman diagrams”, Phys. Rev. D,
61, 027501-1-4, (2000). Related online
version (cited on 31 May 2005): |
|
| 299 | Parentani, R., “Quantum metric fluctuations and
Hawking radiation”, Phys. Rev. D,
63, 041503-1-4, (2001). Related online
version (cited on 31 May 2005): |
|
| 300 | Parentani, R., “What did we learn from
studying acoustic black holes?”, Int. J. Mod.
Phys. A, 17, 2721-2726, (2002).
Related online version (cited on 31 May 2005): |
|
| 301 | Parentani,
R., “The inflationary paradigm: Predictions for CMB”, (2004). URL
(cited on 31 May 2005): |
|
| 302 | Pashaev,
O.K., and Lee, J.-H., “Resonance Solitons as Black Holes in
Madelung Fluid”, Mod. Phys. Lett. A, 17,
1601-1619, (2002). Related online version (cited on 31 May
2005): |
|
| 303 | Peblanski, J., “Electromagnetic waves in gravitational fields”, Phys. Rev., 118, 1396-1408, (1960). | |
| 304 | Peblanski, J., Lectures on Nonlinear Electrodynamics, (Nordita, Copenhagen, Denmark, 1970). | |
| 305 | Penrose, R., “Gravitational collapse: The role of general relativity”, Riv. Nuovo Cimento, 1, 252-276, (1969). | |
| 306 | Perez Bergliaffa, S.E.,
“Effective geometry in Astrophysics”, Int. J.
Mod. Phys. D, 13, 1469-1476,
(2004). Related online version (cited on 31 May 2005): |
|
| 307 | Perez Bergliaffa, S.E., Hibberd,
K., Stone, M., and Visser, M., “Wave Equation for Sound in Fluids
with Vorticity”, Physica D,
191, 121-136, (2001). Related online
version (cited on 31 May 2005): |
|
| 308 | Pham, Q.M., “Sur les équations de l’electromagné dans la materie”, C. R. Hebd. Seanc. Acad. Sci., 242, 465-467, (1956). | |
| 309 | Philips, D.F., Fleischhauer, A., Mair, A., and Walsworth, R.L., “Storage of Light in Atomic Vapor”, Phys. Rev. Lett., 86, 783-786, (2001). | |
| 310 | Pines, D., The Many-Body Problem: A Lecture Note and Reprint Volume, vol. 6 of Frontiers in Physics, (W.A. Benjamin, New York, U.S.A., 1962), 2nd edition. | |
| 311 | Piwnicki, P., “Geometrical approach to light in
inhomogeneous media”, Int. J. Mod. Phys.
A, 17, 1543-1558, (2002).
Related online version (cited on 31 May 2005): |
|
| 312 | Press, W.H., and Teukolsky, S.A., “Floating Orbits, Superradiant Scattering and the Black-Hole Bomb”, Nature, 238, 211-212, (1972). | |
| 313 | Radu, E., “On the Euclidean approach to quantum field theory in Gödel space-time”, Phys. Lett. A, 247, 207-210, (1998). | |
| 314 | Raval, A.,
Hu, B.L., and Koks, D., “Near-thermal radiation in detectors,
mirrors and black holes: A stochastic approach”, Phys. Rev. D, 55,
4795-4812, (1997). Related online version (cited on 31 May
2005): |
|
| 315 | Ray, A.K.,
“Linearized perturbation on stationary inflow solutions in an
inviscid and thin accretion disc”, Mon. Not.
R. Astron. Soc., 344, 83-88,
(2003). Related online version (cited on 31 May 2005): |
|
| 316 | Ray, A.K., and
Bhattacharjee, J.K., “A Dynamical Systems Approach to an Inviscid
and Thin Accretion Disc”, (2003). URL (cited on 31 May
2005): |
|
| 317 | Regge, T., and Wheeler, J.A., “Stability of a Schwarzschild Singularity”, Phys. Rev., 108, 1063-1069, (1957). | |
| 318 | Reznik, B.,
“Trans-Planckian tail in a theory with a cutoff”, Phys. Rev. D, 55,
2152-2158, (1997). Related online version (cited on 31 May
2005): |
|
| 319 | Reznik, B.,
“Origin of the thermal radiation in a solid-state analogue of a
black hole”, Phys. Rev. D, 62,
044044-1-7, (2000). Related online version (cited on 31 May
2005): |
|
| 320 | Rosquist, K., “Letter: A Moving Medium
Simulation of Schwarzschild Black Hole Optics”, Gen. Relativ.
Gravit., 36, 1977-1982, (2004).
Related online version (cited on 31 May 2005): |
|
| 321 | Rosu, H.,
“Towards measuring Hawking like effects in the laboratory. 1”,
unknown status, (1989). Related online version (cited on 7 Dec
2005): |
|
| 322 | Rosu, H.,
“Superoscillations and trans-Planckian frequencies”, Nuovo Cimento B, 112,
131-132, (1997). Related online version (cited on 31 May
2005): |
|
| 323 | Rosu,
Haret C., “On the circular vacuum noise in electron storage
rings”, Nuovo Cimento B, 109, 423-430, (1994). Related online version
(cited on 31 May 2005): |
|
| 324 | Rosu, H.C.,
“Classical and quantum inertia: A matter of principles”,
Grav. and Cosmol., 5, 81-91, (1999). Related online version (cited on
31 May 2005): |
|
| 325 | Rosu, H.C.,
“Relativistic quantum field inertia and vacuum field noise spectra:
By quest of the lost universality to high energy radiometric
standards”, Int. J. Theor. Phys.,
39, 285-295, (2000). Related online
version (cited on 31 May 2005): |
|
| 326 | Rovelli, C., “Loop quantum gravity”, Phys. World, 16, 37-41, (November, 2003). | |
| 327 | Rovelli, C., Quantum Gravity, Cambridge Monographs on Mathematical Physics, (Cambridge University Press, Cambridge, U.K.; New York, U.S.A., 2004). | |
| 328 | Rovelli,
C., and Smolin, L., “Discreteness of area and volume in quantum
gravity”, Nucl. Phys. B, 442, 593-619,
(1995). Related online version (cited on 31 May 2005): |
|
| 329 | Russo,
J.G., “Model of black hole evolution”, Phys.
Rev. D, 55, 871-877, (1997).
Related online version (cited on 31 May 2005): |
|
| 330 | Saida, H.,
and Sakagami, M., “Black hole radiation with high frequency
dispersion”, Phys. Rev. D, 61, 084023-1-8,
(2000). Related online version (cited on 31 May 2005): |
|
| 331 | Sakagami, M., and Ohashi, A., “Hawking Radiation in
Laboratories”, Prog. Theor. Phys.,
107, 1267-1272, (2002). Related online
version (cited on 31 May 2005): |
|
| 332 | Sakharov, A.D., “Vacuum quantum fluctuations in curved space and the theory of gravitation”, Sov. Phys. Dokl., 12, 1040-1041, (1968). | |
| 333 | Salehi,
H., “Evaporating Black Holes And An Entropic Scale-Hierarchy”,
(1994). URL (cited on 31 May 2005): |
|
| 334 | Salehi,
H., “Evaporating black holes and long range scaling”, Gen. Relativ. Gravit., 35, 1679-1690, (2003). Related online version
(cited on 31 May 2005): |
|
| 335 | Saul, L.A.,
“The Dynamic Space of General Relativity in Second Atomization”, in
Reimer, A., ed., General Relativity Research
Trends, vol. 249 of Horizons in World Physics, 153-172,
(Nova Science, New York, U.S.A., 2005). Related online version
(cited on 31 May 2005): |
|
| 336 | Schmelzer, I., “General Ether Theory”, (2000). URL
(cited on 31 May 2005): |
|
| 337 | Schmelzer, I., “A metric theory of gravity
with condensed matter interpretation”, (2000). URL (cited on 31 May
2005): |
|
| 338 | Schmelzer, I., “Derivation of the Einstein
equivalence principle in a class of condensed matter theories”,
(2001). URL (cited on 31 May 2005): |
|
| 339 | Schmelzer, I., “A generalization of the
Lorentz ether to gravity with general-relativistic limit”, (2002).
URL (cited on 31 May 2005): |
|
| 340 | Schützhold, R., “On the Hawking effect”,
Phys. Rev. D, 64, 024029-1-14, (2001). Related online version
(cited on 31 May 2005): |
|
| 341 | Schützhold, R., “Particle definition in the
presence of black holes”, Phys. Rev.
D, 63, 024014-1-20, (2001).
Related online version (cited on 31 May 2005): |
|
| 342 | Schützhold, R., Plunien, G., and Soff, G.,
“Dielectric Black Hole Analogs”, Phys. Rev.
Lett., 88, 061101-1-4, (2002).
Related online version (cited on 31 May 2005): |
|
| 343 | Schützhold, R., Uhlmann, M., Xu, Y., and Fischer,
U. R., “Quantum backreaction in dilute Bose-Einstein
condensates”, Phys. Rev. D,
72, 105005-1-8, (2005). Related online
version (cited on 31 May 2005): |
|
| 344 | Schützhold, R., and Unruh, W.G., “Gravity wave
analogues of black holes”, Phys. Rev.
D, 66, 044019-1-13, (2002).
Related online version (cited on 31 May 2005): |
|
| 345 | Schützhold, R., and Unruh, W.G., “Gravity wave analogues of black holes”, Phys. Rev. D, 66, 044019-1-13, (2002). | |
| 346 | Schützhold, R., and Unruh, W.G., “Problems of
doubly special relativity with variable speed of light”,
J. Exp. Theor. Phys. Lett.,
78, 431, (2003). Related online
version (cited on 31 May 2005): |
|
| 347 | Schützhold, R., and Unruh, W.G., “Hawking Radiation
in an Electromagnetic Waveguide?”, Phys. Rev.
Lett., 95, 031301-1-4, (2005).
Related online version (cited on 31 May 2005): |
|
| 348 | Scully, M.O., and Zubairy, M.S., Quantum Optics, (Cambridge University Press, Cambridge, U.K.; New York, U.S.A., 1997). | |
| 349 | Shankaranarayanan, S., “Is there an
imprint of Planck-scale physics on inflationary cosmology?”,
Class. Quantum Grav., 20, 75-83, (2003). Related online version (cited
on 31 May 2005): |
|
| 350 | Shankaranarayanan, S.,
Padmanabhan, T., and Srinivasan, K., “Hawking radiation in
different coordinate settings: complex paths approach”,
Class. Quantum Grav., 19, 2671-2687, (2002). Related online version
(cited on 31 May 2005): |
|
| 351 | Siemieniec-Ozieblo, G., and Woszczyna, A.,
“Acoustic instabilities at the transition from the
radiation-dominated to the matter-dominated universe”, Astron. Astrophys., 419, 801-810, (2004). Related online version
(cited on 31 May 2005): |
|
| 352 | Skrotskii, G.V., “The influence of gravitation on the propagation of light”, Sov. Phys. Dokl., 2, 226-229, (1957). | |
| 353 | Skudrzyk, E., The Foundations of Acoustics, (Springer, New York, U.S.A., 1971). | |
| 354 | Slatyer, T.R., and
Savage, C.M., “Superradiant scattering from a hydrodynamic vortex”,
Class. Quantum
Grav., 22, 3833-3839, (2005).
Related online version (cited on 31 May 2005): |
|
| 355 | Smolin,
L., “Experimental signatures of quantum gravity”, (1995). URL
(cited on 31 May 2005): |
|
| 356 | Smolin, L.,
“How far are we from the quantum theory of gravity?”, (2003). URL
(cited on 31 May 2005): |
|
| 357 | Smolyaninov, I.I., “Linear and nonlinear optics of
surface plasmon toy-models of black holes and wormholes”, (2003).
URL (cited on 31 May 2005): |
|
| 358 | Smolyaninov, I.I., and Davis, C.C., “Surface
plasmon toy-models of black holes and wormholes”, (2003). URL
(cited on 31 May 2005): |
|
| 359 | Sorkin,
R.D., “Causal sets: Discrete gravity (Notes for the Valdivia Summer
School)”, (2003). URL (cited on 31 May 2005): |
|
| 360 | Srinivasan, K., and
Padmanabhan, T., “Particle production and complex path analysis”,
Phys. Rev.
D, 60, 24007-1-20, (1999).
Related online version (cited on 31 May 2005): |
|
| 361 | Sriramkumar, L., and
Padmanabhan, T., “Initial state of matter fields and
trans-Planckian physics: Can CMB observations disentangle the
two?”, Phys. Rev. D, 71, 103512-1-11, (2005). Related online version
(cited on 31 May 2005): |
|
| 362 | Starobinsky, A.A., “Robustness of the
inflationary perturbation spectrum to trans-Planckian physics”,
J. Exp. Theor. Phys. Lett.,
73, 415-418, (2001). Related online
version (cited on 31 May 2005): |
|
| 363 | Starobinsky, A.A., and Tkachev, I.I.,
“Trans-Planckian Particle Creation in Cosmology and Ultrahigh
Energy Cosmic Rays”, J. Exp. Theor. Phys.
Lett., 76, 235-239, (2002).
Related online version (cited on 31 May 2005): |
|
| 364 | Stephens, G.J., and Hu, B.L., “Notes on black
hole phase transitions”, Int. J. Theor.
Phys., 40, 2183-2200, (2001).
Related online version (cited on 31 May 2005): |
|
| 365 | Stone, M.,
“Magnus and other forces on vortices in superfluids and
superconductors”, (1997). URL (cited on 31 May 2005): |
|
| 366 | Stone, M.,
“Acoustic energy and momentum in a moving medium”, Phys. Rev. E, 62,
1341-1350, (2000). Related online version (cited on 31 May
2005): |
|
| 367 | Stone, M., “Iordanskii force and the
gravitational Aharonov-Bohm effect for a moving vortex”,
Phys. Rev. B, 61, 11780-11786, (2000). Related online version
(cited on 31 May 2005): |
|
| 368 | Stone, M.,
“Phonons and Forces: Momentum versus Pseudomomentum in Moving
Fluids”, (2000). URL (cited on 31 May 2005): |
|
| 369 | Synge, J.L., Relativity: The General Theory, (North-Holland, Amsterdam, Netherlands, 1960). | |
| 370 | Tamaki, T.,
Harada, T., Miyamoto, U., and Torii, T., “Particle velocity in
noncommutative space-time”, Phys. Rev.
D, 66, 105003-1-6, (2002).
Related online version (cited on 31 May 2005): |
|
| 371 | Tanaka,
T., “A comment on trans-Planckian physics in inflationary
universe”, (2001). URL (cited on 31 May 2005): |
|
| 372 | Thorne, K.S., Price, R.H., and Macdonald, D.A., eds., Black Holes: The Membrane Paradigm, (Yale University Press, New Haven, U.S.A.; London, U.K., 1986). | |
| 373 | Trautman, A., “Comparison of Newtonian and relativistic theories of space-time”, in Hoffman, B., ed., Perspectives in Geometry and Relativity: Essays in honor of Václav Hlavatý, 413-425, (Indiana University Press, Bloomington, U.S.A., 1966). | |
| 374 | Turukhin, A.V., Sudarshanam, V.S., Shahriar, M.S., Musser, J.A., Ham, B.S., and Hemmer, P.R., “Observation of Ultraslow and Stored Light Pulses in a Solid”, Phys. Rev. Lett., 88, 023602-1-4, (2002). | |
| 375 | Unruh, W.G., “Notes on black-hole evaporation”, Phys. Rev. D, 14, 870-892, (1976). | |
| 376 | Unruh, W.G., “Experimental Black-Hole Evaporation?”, Phys. Rev. Lett., 46, 1351-1353, (1981). | |
| 377 | Unruh, W.G.,
“Sonic analogue of black holes and the effects of high frequencies
on black hole evaporation”, Phys. Rev.
D, 51, 2827-2838, (1994).
Related online version (cited on 31 May 2005): |
|
| 378 | Unruh, W.G., “Sonic analog of black holes and the effects of high frequencies on black hole evaporation”, Phys. Rev. D, 51, 2827-2838, (1995). preprinted as gr-qc/9409008. | |
| 379 | Unruh, W.G.,
and Schützhold, R., “On slow light as a black hole analogue”,
Phys. Rev. D, 68, 024008-1-14, (2003). Related online version
(cited on 31 May 2005): |
|
| 380 | Unruh,
W.G., and Schützhold, R., “Universality of the Hawking effect”,
Phys. Rev. D, 71, 024028-1-11, (2005). Related online version
(cited on 31 May 2005): |
|
| 381 | Vachaspati, T., “Propagating phase
boundaries as sonic horizons”, (2003). URL (cited on 31 May
2005): |
|
| 382 | Vachaspati, T., “Cosmic Problems for
Condensed Matter Experiment”, (2004). URL (cited on 31 May
2005): |
|
| 383 | Vestergaard Hau, L., Harris, S.E., Dutton, Z., and Behroozi, C.H., “Light speed reduction to 17 metres per second in ultracold atomic gas”, Nature, 397, 594-598, (1999). | |
| 384 | Vishveshwara, C.V., “Scattering of gravitational radiation by a Schwarzschild black-hole”, Nature, 227, 936-938, (1970). | |
| 385 | Vishveshwara, C.V., “Stability of the Schwarzschild metric”, Phys. Rev. D, 1, 2870-2879, (1970). | |
| 386 | Visser,
M., “Dirty black holes: Thermodynamics and horizon structure”,
Phys. Rev. D, 46, 2445-2451, (1992). Related online version
(cited on 31 May 2005): |
|
| 387 | Visser,
M., “Acoustic propagation in fluids: An unexpected example of
Lorentzian geometry”, (1993). URL (cited on 31 May 2005): |
|
| 388 | Visser, M., Lorentzian Wormholes: From Einstein to Hawking, AIP Series in Computational and Applied Mathematical Physics, (American Institute of Physics, Woodbury, U.S.A., 1995). | |
| 389 | Visser,
M., “Acoustic black holes: Horizons, ergospheres, and Hawking
radiation”, Class. Quantum Grav., 15,
1767-1791, (1998). Related online version (cited on 31 May
2005): |
|
| 390 | Visser, M.,
“Hawking radiation without black hole entropy”, Phys. Rev. Lett., 80,
3436-3439, (1998). Related online version (cited on 31 May
2005): |
|
| 391 | Visser, M.,
“Acoustic black holes”, (1999). URL (cited on 31 May
2005): |
|
| 392 | Visser,
M., “Comment on “Relativistic Effects of Light in Moving Media with
Extremely Low Group Velocity””, Phys. Rev.
Lett., 85, 5252, (2000).
Related online version (cited on 31 May 2005): |
|
| 393 | Visser,
M., “Sakharov’s induced gravity: A modern perspective”,
Mod. Phys. Lett. A, 17, 977-992, (2002). Related online version (cited
on 31 May 2005): |
|
| 394 | Visser,
M., “Essential and inessential features of Hawking radiation”,
Int. J. Mod. Phys. D, 12, 649-661, (2003). Related online version (cited
on 31 May 2005): |
|
| 395 | Visser,
M., “Heuristic approach to the Schwarzschild geometry”, (2003). URL
(cited on 31 May 2005): |
|
| 396 | Visser, M.,
“The quantum physics of chronology protection”, in Gibbons, G.W.,
Shellard, E.P.S., and Rankin, S.J., eds., The
Future of Theoretical Physics and Cosmology: Celebrating
Stephen Hawking’s 60th Birthday,
161-175, (Cambridge University Press, Cambridge, U.K.; New York,
U.S.A., 2003). Related online version (cited on 31 May
2005): |
|
| 397 | Visser, M.,
Barceló, C., and Liberati, S., “Acoustics in Bose-Einstein
condensates as an example of Lorentz symmetry breaking”, (2001).
URL (cited on 31 May 2005): |
|
| 398 | Visser,
M., Barceló, C., and Liberati, S., “Analogue models of and for
gravity”, Gen. Relativ. Gravit., 34,
1719-1734, (2002). Related online version (cited on 31 May
2005): |
|
| 399 | Visser,
M., Barceló, C., and Liberati, S., “Bi-refringence versus
bi-metricity”, (2002). URL (cited on 31 May 2005): |
|
| 400 | Visser, M.,
and Weinfurtner, S., “Massive phonon modes from a BEC-based analog
model”, (2004). URL (cited on 31 May 2005): |
|
| 401 | Visser, M.,
and Weinfurtner, S.E.C., “Vortex analogue for the equatorial
geometry of the Kerr black hole”, Class.
Quantum Grav., 22, 2493-2510,
(2004). URL (cited on 31 May 2005): |
|
| 402 | Volovik,
G.E., “Is there analogy between quantized vortex and black hole?”,
(1995). URL (cited on 31 May 2005): |
|
| 403 | Volovik,
G.E., “AB interface in superfluid 3He and Casimir effect”,
J. Exp. Theor. Phys. Lett.,
63, 483-489, (1996). Related online
version (cited on 31 May 2005): |
|
| 404 | Volovik,
G.E., “Cosmology, particle physics and superfluid 3He”,
Czech. J. Phys., 46, 3048, (1996). Related online version (cited on
31 May 2005): |
|
| 405 | Volovik, G.E., “Induced gravity in superfluid
3He”, J. Low Temp. Phys., 113, 667-680, (1997). Related online version
(cited on 31 May 2005): |
|
| 406 | Volovik,
G.E., “Energy-momentum tensor of quasiparticles in the effective
gravity in superfluids”, (1998). URL (cited on 31 May
2005): |
|
| 407 | Volovik, G.E., “Gravity of monopole and string and
gravitational constant in 3He-A”, J.
Exp. Theor. Phys. Lett.,
67, 698-704, (1998). Related online
version (cited on 31 May 2005): |
|
| 408 | Volovik,
G.E., “Vortex vs. spinning string: Iordanskii force and
gravitational Aharonov-Bohm effect”, J. Exp.
Theor. Phys. Lett., 67,
841-846, (1998). Related online version (cited on 31 May
2005): |
|
| 409 | Volovik,
G.E., “Simulation of Painleve-Gullstrand black hole in thin 3He-A
film”, J. Exp. Theor. Phys. Lett., 69, 662-668, (1999). Related online version (cited
on 31 May 2005): |
|
| 410 | Volovik,
G.E., “3He and Universe parallelism”, in Bunkov, Y.M., and Godfrin,
H., eds., Topological defects and the
non-equilibrium dynamics of symmetry breaking phase
transitions, 353-387, (Kluwer Academic, Dordrecht,
Netherlands; Boston, U.S.A., 2000). Related online version (cited
on 31 May 2005): |
|
| 411 | Volovik,
G.E., “Links between gravity and dynamics of quantum liquids”,
Grav. and Cosmol., 6, 187-203, (2000). Related online version (cited
on 31 May 2005): |
|
| 412 | Volovik,
G.E., “Fermion zero modes in Painleve-Gullstrand black hole”,
J. Exp. Theor. Phys. Lett., 73, 721-725,
(2001). Related online version (cited on 31 May 2005): |
|
| 413 | Volovik,
G.E., “Superfluid analogies of cosmological phenomena”,
Phys. Rep., 351, 195-348, (2001). Related online version
(cited on 31 May 2005): |
|
| 414 | Volovik, G.E., “Vacuum Energy and Cosmological
Constant: View from Condensed Matter”, J. Low
Temp. Phys., 124, 25-39,
(2001). Related online version (cited on 31 May 2005): |
|
| 415 | Volovik, G.E., “Black-hole horizon and metric
singularity at the brane separating two sliding superfluids”,
J. Exp. Theor. Phys. Lett.,
76, 296-300, (2002). Related online
version (cited on 31 May 2005): |
|
| 416 | Volovik, G.E., “Effective gravity and quantum
vacuum in superfluids”, in Novello, M., Visser, M., and Volovik,
G., eds., Artificial Black Holes,
127-177, (World Scientific, Singapore; River Edge, U.S.A., 2002).
Related online version (cited on 31 May 2005): |
|
| 417 | Volovik, G.E., “Momentum space topology of fermion
zero modes on brane”, J. Exp. Theor.
Phys. Lett., 75, 63-66, (2002). Related online version (cited
on 31 May 2005): |
|
| 418 | Volovik, G.E., The Universe in a Helium Droplet, vol. 117 of International Series of Monographs on Physics, (Clarendon Press; Oxford University Press, Oxford, U.K.; New York, U.S.A., 2003). | |
| 419 | Volovik, G.E., “What can the quantum liquid
say on the brane black hole, the entropy of extremal black hole and
the vacuum energy?”, Found. Phys.,
33, 349-368, (2003). Related online
version (cited on 31 May 2005): |
|
| 420 | Volovik, G.E., and Vachaspati, T., “Aspects of 3He
and the Standard Electroweak Model”, Int. J. Mod. Phys. B,
10, 471-521, (1996). Related online
version (cited on 31 May 2005): |
|
| 421 | Volovik, G.E., and Zelnikov, A.I., “On
temperature corrections to Einstein equations”, J. Exp. Theor. Phys.
Lett., 78, 751-756, (2003).
Related online version (cited on 31 May 2005): |
|
| 422 | Wald, R.M., General Relativity, (University of Chicago Press, Chicago, U.S.A., 1984). | |
| 423 | Wald, R.M.,
“The Thermodynamics of Black Holes”, Living
Rev. Relativity, 4, lrr-2001-6,
(2001). URL (cited on 31 May 2005): http://www.livingreviews.org/lrr-2001-6. |
|
| 424 | Weinfurtner, S.E.C., “Analog model for an
expanding universe”, (2004). URL (cited on 31 May 2005): |
|
| 425 | Weinfurtner, S.E.C., Simulation of gravitational objects in Bose-Einstein
condensates, (Technical University of Munich and Max Planck
Institute of Quantum Optics, Garching, Munich, Germany, 2004).
Related online version (cited on 31 May 2005): |
|
| 426 | Winicour, J., “A New Way to Make Waves”,
(2000). URL (cited on 31 May 2005): |
|
| 427 | Winterberg, F., “Detection of gravitational waves by stellar scintillation in space”, Nuovo Cimento, 53B, 264-279, (1968). | |
| 428 | Zaslavsky, O.B., “Geometry and
thermodynamics of quantum-corrected acceleration horizons”,
Class. Quantum Grav., 17, 497-512, (2000). Related online version (cited
on 31 May 2005): |
|
| 429 | Zeldovich, Y.B., “The Generation of Waves by a Rotating Body”, J. Exp. Theor. Phys. Lett., 14, 180, (1971). | |
| 430 | Zeldovich, Y.B., “Amplification of cylindrical electromagnetic waves reflected from a rotating body”, Sov. Phys. JETP, 35, 1085, (1972). | |
| 431 | Zerilli, F.J., “Effective potential for even parity Regge-Wheeler gravitational perturbation equations”, Phys. Rev. Lett., 24, 737-738, (1970). | |
| 432 | Zhang, P.-M.,
Cao, L.-M., Duan, Y.-S., and Zhong, C.-K., “Transverse force on a
moving vortex with the acoustic geometry”, Phys. Lett. A, 326,
375, (2004). Related online version (cited on 31 May
2005): |
|
| 433 | Zloshchastiev, K.G., “Acoustic phase
lenses in superfluid He as models of composite spacetimes in
general relativity: Classical and quantum properties with provision
for spatial topology”, Acta Phys. Pol.
B, 30, 897-905, (1999). Related
online version (cited on 31 May 2005): |
|
| 434 | Zloshchastiev, K.G., “Non-linear
phenomena in electrical circuits: Simulation of non-linear
relativistic field theory and possible applications”, (1999). URL
(cited on 31 May 2005): |
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