Cite this article:
Zeng Xiao-Xiong, Zhou Shi-Wei, Liu Wen-Biao. Non-equilibrium Landauer transport model for Hawking radiation from a Reissner–Nordstrom black holeJ. Chin. Phys. B, 2012, 21(9): 090402.
| Zeng Xiao-Xiong, Zhou Shi-Wei, Liu Wen-Biao. Non-equilibrium Landauer transport model for Hawking radiation from a Reissner–Nordstrom black holeJ. Chin. Phys. B, 2012, 21(9): 090402. |
Non-equilibrium Landauer transport model for Hawking radiation from a Reissner–Nordstrom black hole
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Abstract
The recent work of Nation et al., in which the Hawking radiation energy and entropy flow from a black hole is considered to be produced in a one-dimensional Landauer transport process, is extended to the case of a Reissner-Nordstrom black hole. The energy flow contains not only the contribution of the thermal flux but also that of the particle flux. It is found that the charge can also be transported via the one-dimensional quantum tunnel. Because of the existence of the electrostatic potential, the entropy production rate is shown to be smaller than that of the Schwarzschild black hole. -
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