Probing Hawking Temperature Threshold via Quantum Depletion in Bose-Einstein Condensate
Abstract
We investigate the correlation between quantum depletion and Hawking temperature in a ringshaped Bose-Einstein condensate featuring an analog black hole-white hole horizon pair, using the Bogoliubov approach. The presence of horizons is found to enhance the quantum depletion compared to horizon-free configurations, indicating a correlation between depletion and horizon dynamics. Via tuning the Hawking temperature, we observe its effect on the depletion profile. Our results show that depletion increases with Hawking temperature, and beyond a certain threshold, backreaction effects emerge, challenging the validity of the Bogoliubov approximation. We identify a viable parameter regime where the system remains both theoretically controlled and experimentally accessible, offering insight into horizon-induced quantum fluctuations, with implications for future studies of backreaction.
Cite
@article{arxiv.2506.04597,
title = {Probing Hawking Temperature Threshold via Quantum Depletion in Bose-Einstein Condensate},
author = {Arun Rana},
journal= {arXiv preprint arXiv:2506.04597},
year = {2026}
}
Comments
8 Pages, 7 Figures, some corrections added