Black hole temperature and area-law entropy are reproduced from a higher-dimensional flat spacetime embedding, mapping static observers to accelerating observers and counting scalar edge states.
A New Global Embedding Approach to Study Hawking and Unruh Effects
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abstract
A new type of global embedding of curved space-times in higher dimensional flat ones is introduced to present a unified description of Hawking and Unruh effects. Our analysis simplifies as well as generalises the conventional embedding approach.
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gr-qc 1years
2019 1verdicts
CONDITIONAL 1representative citing papers
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Embedding into flat spacetime and black hole thermodynamics
Black hole temperature and area-law entropy are reproduced from a higher-dimensional flat spacetime embedding, mapping static observers to accelerating observers and counting scalar edge states.