On dumb holes and their gravity duals
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[1] M. Sastrillo,et al. Radiation , 2019, Cancer Causes & Control.
[2] G. Lawrence,et al. Measurement of stimulated Hawking emission in an analogue system. , 2010, Physical review letters.
[3] M. Edalati,et al. Holography and the sound of criticality , 2010, 1005.4075.
[4] M. Edalati,et al. Shear modes, criticality and extremal black holes , 2010, 1001.0779.
[5] T. Takayanagi,et al. Holographic superconductor/insulator transition at zero temperature , 2009, 0911.0962.
[6] M. Edalati,et al. Transport coefficients at zero temperature from extremal black holes , 2009, 0910.0645.
[7] J. McGreevy,et al. Emergent quantum criticality, Fermi surfaces, and AdS2 , 2009, 0907.2694.
[8] J. McGreevy,et al. Non-Fermi liquids from holography , 2009, 0903.2477.
[9] Nabamita Banerjee,et al. Hydrodynamics from charged black branes , 2008, 0809.2596.
[10] A. Yarom,et al. Fluid dynamics of R-charged black holes , 2008, 0809.2488.
[11] H. Reall,et al. Local Fluid Dynamical Entropy from Gravity , 2008, 0803.2526.
[12] V. Hubeny,et al. Nonlinear fluid dynamics from gravity , 2007, 0712.2456.
[13] A. Awad. THE FIRST LAW, COUNTERTERMS AND KERR-AdS5 BLACK HOLES , 2007, 0708.3458.
[14] S. Lahiri,et al. Large rotating AdS black holes from fluid mechanics , 2007, 0708.1770.
[15] D. Son,et al. Viscosity, Black Holes, and Quantum Field Theory , 2007, 0704.0240.
[16] D. Son,et al. From AdS/CFT correspondence to hydrodynamics. II. Sound waves , 2002 .
[17] D. Son,et al. From AdS/CFT correspondence to hydrodynamics , 2002 .
[18] M. Novello,et al. Artificial Black Holes , 2002 .
[19] A. Awad. Higher-dimensional charged rotating solutions in (A)dS spacetimes , 2002, hep-th/0209238.
[20] S. Basak,et al. ‘Superresonance’ from a rotating acoustic black hole , 2002, gr-qc/0203059.
[21] M. Visser,et al. Analogue Models of and for Gravity , 2001, gr-qc/0111111.
[22] M. Visser,et al. Towards the Observation of Hawking Radiation in Bose–Einstein Condensates , 2001, gr-qc/0110036.
[23] S. Bergliaffa,et al. Wave equation for sound in fluids with vorticity , 2001, cond-mat/0106255.
[24] M. Visser. Essential and inessential features of Hawking radiation , 2001, hep-th/0106111.
[25] D. Son,et al. Shear viscosity of strongly coupled N = 4 supersymmetric Yang-Mills plasma. , 2001, Physical review letters.
[26] C. Barceló,et al. Analogue gravity from Bose-Einstein condensates , 2001 .
[27] Clifford V. Johnson,et al. Higher dimensional Kerr-AdS black holes and the AdS/CFT correspondence , 2000, hep-th/0008211.
[28] M. Visser,et al. Unexpectedly large surface gravities for acoustic horizons , 2000, gr-qc/0003105.
[29] Clifford V. Johnson,et al. Holographic Stress Tensors for Kerr-AdS Black Holes , 1999, hep-th/9910040.
[30] N. Bilić. Relativistic acoustic geometry , 1999, gr-qc/9908002.
[31] J. Maldacena,et al. Large N Field Theories, String Theory and Gravity , 1999, hep-th/9905111.
[32] M. Visser. Acoustic black holes , 1999, gr-qc/9901047.
[33] R. Myers,et al. The AdS / CFT correspondence and a new positive energy conjecture for general relativity , 1998, hep-th/9808079.
[34] J. Maldacena. The Large-N Limit of Superconformal Field Theories and Supergravity , 1997, hep-th/9711200.
[35] Unruh,et al. Sonic analogue of black holes and the effects of high frequencies on black hole evaporation. , 1994, Physical review. D, Particles and fields.
[36] M. Visser. Acoustic propagation in fluids: an unexpected example of Lorentzian geometry , 1993, gr-qc/9311028.
[37] Jacobson,et al. Black hole radiation in the presence of a short distance cutoff. , 1993, Physical review. D, Particles and fields.
[38] Jacobson,et al. Black-hole evaporation and ultrashort distances. , 1991, Physical review. D, Particles and fields.
[39] W. Unruh. Experimental black hole evaporation , 1981 .
[40] Preprint typeset in JHEP style- HYPER VERSION Forced Fluid Dynamics from Gravity , 2022 .