상세 보기
Temperatures of AdS2 black holes and holography revisited
- Kim, Wontae;
- Nam, Mungon
WEB OF SCIENCE
0SCOPUS
0초록
In a dilaton gravity model, we revisit the calculation of the temperature of an evaporating black hole that is initially formed by a shock wave, taking into account the quantum backreaction. Based on the holographic principle, along with the assumption of a boundary equation of motion, we show that the black hole energy is maintained for a while during the early stage of evaporation. Gradually, it decreases as time goes on and eventually vanishes. Thus, the Stefan-Boltzmann law tells us that the black hole temperature, defined by the emission rate of the black hole energy, starts from zero temperature and reaches a maximum value at a critical time, and finally vanishes. It is also shown that the maximum temperature of the evaporating black hole never exceeds the Hawking temperature of the eternal AdS(2) black hole. We discuss physical implications of the initial zero temperature of the evaporating black hole.
키워드
- 제목
- Temperatures of AdS2 black holes and holography revisited
- 저자
- Kim, Wontae; Nam, Mungon
- 발행일
- 2024-08-30
- 유형
- Article
- 권
- 39
- 호
- 25N26