WHAT DID WE LEARN FROM STUDYING ACOUSTIC BLACK HOLES?

Author:

PARENTANI RENAUD1

Affiliation:

1. Laboratoire de Mathématique et Physique Théorique, CNRS-UMR 6083, Université de Tours, Parc de Grammont, 37200 Tours, France

Abstract

The study of acoustic black holes has been undertaken to provide new insights about the role of high frequencies in black hole evaporation. Because of the infinite gravitational redshift from the event horizon, Hawking quanta emerge from configurations which possessed ultra high (trans-Planckian) frequencies. Therefore Hawking radiation cannot be derived within the framework of a low energy effective theory; and in all derivations there are some assumptions concerning Planck scale physics. The analogy with condensed matter physics was thus introduced to see if the asymptotic properties of the Hawking phonons emitted by an acoustic black hole, namely stationarity and thermality, are sensitive to the high frequency physics which stems from the granular character of matter and which is governed by a non-linear dispersion relation. In 1995 Unruh showed that they are not sensitive in this respect, in spite of the fact that phonon propagation near the (acoustic) horizon drastically differs from that of photons. In 2000 the same analogy was used to establish the robustness of the spectrum of primordial density fluctuations in inflationary models. This analogy is currently stimulating research for experimenting Hawking radiation. Finally it could also be a useful guide for going beyond the semi-classical description of black hole evaporation.

Publisher

World Scientific Pub Co Pte Lt

Subject

Astronomy and Astrophysics,Nuclear and High Energy Physics,Atomic and Molecular Physics, and Optics

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1. Analogue gravity and the Hawking effect: historical perspective and literature review;The European Physical Journal H;2023-12

2. Analogue Gravity;Living Reviews in Relativity;2011-05-11

3. Black/white hole radiation from dispersive theories;Physical Review D;2009-06-08

4. Particle propagation in cosmological backgrounds;Journal of Physics A: Mathematical and Theoretical;2007-06-06

5. Particle Propagation in Cosmological Backgrounds;International Journal of Theoretical Physics;2007-05-05

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