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Письма в Журнал экспериментальной и теоретической физики, 2025, том 121, выпуск 4, страницы 260–262 DOI: https://doi.org/10.31857/S0370274X25020158
(Mi jetpl7442)
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Эта публикация цитируется в 8 научных статьях (всего в 8 статьях)
АСТРОФИЗИКА, ФИЗИКА КОСМОСА, КОСМОЛОГИЯ, ГРАВИТАЦИЯ
Tsallis–Cirto entropy of black hole and black hole atom
G. E. Volovik Landau Institute for Theoretical Physics, 142432 Chernogolovka, Russia
DOI:
https://doi.org/10.31857/S0370274X25020158
Аннотация:
The quantum tunneling processes related to the black hole determine the black hole thermodynamics. The Hawking temperature is determined by the quantum tunneling processes of radiation of particles from the black hole. On the other hand, the Bekenstein-Hawking entropy of the black hole is obtained by consideration of the macroscopic quantum tunneling processes of splitting of black hole to the smaller black holes. These tunneling processes also determine the composition rule for the black hole entropy, which coincides with the composition rule for the non-extensive Tsallis–Cirto $\delta=2$ entropy. This composition rule suggests that the mass spectrum of the black hole is equidistant, $M=NM_0$. Here $N$ is an integer number and $M_0=\sqrt{2}m_{\rm P}$ is the mass quantum expressed via the reduced Planck mass $m_{\rm P}$. The Bekenstein–Hawking entropy of the black hole with mass $M=NM_0$ is $S_{\rm BH}(N)=N^2$.
Поступила в редакцию: 16.09.2024 Исправленный вариант: 14.12.2024 Принята в печать: 20.12.2024
Образец цитирования:
G. E. Volovik, “Tsallis–Cirto entropy of black hole and black hole atom”, Письма в ЖЭТФ, 121:4 (2025), 260–262; JETP Letters, 121:4 (2025), 243–248
Образцы ссылок на эту страницу:
https://www.mathnet.ru/rus/jetpl7442 https://www.mathnet.ru/rus/jetpl/v121/i4/p260
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