2013Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D. Particles and fieldsOpen access

Hawking radiation from dynamical horizons

A. Chatterjee, B. Chatterjee, Amit Ghosh

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Abstract

In completely local settings, we establish that a spherically symmetric, dynamically evolving black hole horizon can be assigned a Hawking temperature under a mild assumption. Moreover, we calculate the Hawking flux and show that the radius of the horizon shrinks in accordance with the amount of emitted flux.

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In completely local settings, we establish that a spherically symmetric, dynamically evolving black hole horizon can be assigned a Hawking temperature under a mild assumption. Moreover, we calculate the Hawking flux and show that the radius of the horizon shrinks in accordance with the amount of emitted flux.

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Available abstract

In completely local settings, we establish that a spherically symmetric, dynamically evolving black hole horizon can be assigned a Hawking temperature under a mild assumption. Moreover, we calculate the Hawking flux and show that the radius of the horizon shrinks in accordance with the amount of emitted flux.

Key concepts: Hawking, Hawking radiation, Horizon, Physics, RADIUS, Black hole (networking), Flux (metallurgy), Event horizon

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