arXiv · 1602.05336
Schwinger Effect, Hawking Radiation, and Unruh Effect
Abstract
We revisit the Schwinger effect in de Sitter, anti-de Sitter spaces and charged black holes, and explore the interplay between quantum electrodynamics and the quantum gravity effect at one-loop level. We then advance a thermal interpretation of the Schwinger effect in curved spacetimes. Finally, we show that the Schwinger effect in a near-extremal black hole differs from Hawking radiation of charged particles in a non-extremal black hole and is factorized into those in an anti-de Sitter space and a Rindler space with the surface gravity for acceleration.
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Sang Pyo Kim. 2016-02-17. Schwinger Effect, Hawking Radiation, and Unruh Effect. https://doi.org/10.1142/s021827181645005x
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