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Test of quantum atmosphere in the dimensionally reduced Schwarzschild black hole

机译:在尺寸缩小的Schwarzschild黑洞中测试量子气氛

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It has been suggested by Giddings that the origin of Hawking radiation in black holes is a quantum atmosphere of near-horizon quantum region by investigating both the total emission rate and the stress tensor of Hawking radiation. Revisiting this issue in the exactly soluble model of a dimensionally reduced Schwarzschild black hole, we shall confirm that the dominant Hawking radiation in the Unruh vacuum indeed occurs at the quantum atmosphere, not just at the horizon by exactly calculating the out-temperature responsible for outgoing Hawking particle excitations. Consequently we show that the out-temperature vanishes at the horizon and has a peak at a scale whose radial extent is set by the horizon radius, and then decreases to the Hawking temperature at infinity. We also discuss bounds of location of the peak for the out-temperature in our model.
机译:Giddings提出,通过研究霍金辐射的总发射率和应力张量,黑洞中的霍金辐射的起源是接近水平量子区域的量子大气。在尺寸减小的Schwarzschild黑洞的完全可溶模型中重新审视此问题,我们将通过精确计算引起外排的温度来确认Unruh真空中占优势的Hawking辐射确实发生在量子大气中,而不仅仅是在地平线上霍金粒子激发。因此,我们证明了高温在地平线上消失,并在一个刻度上具有一个峰值,该刻度的径向范围由地平线半径设置,然后在无穷大处下降到霍金温度。我们还讨论了模型中过热峰的位置范围。

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