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Entropy Conservation of Linear Dilaton Black Holes in Quantum Corrected Hawking Radiation

机译:量子修正中线性Dilaton黑洞的熵守恒   霍金辐射

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摘要

It has been shown recently that information is lost in the Hawking radiationof the linear dilaton black holes in various theories when applying thetunneling formulism without considering quantum gravity effects. In thisLetter, we recalculate the emission probability by taking into account of thelog-area correction to the Bekenstein-Hawking entropy and the statisticalcorrelation between quanta emitted. The crucial role of the black hole remnanton the entropy conservation is highlighted. We model the remnant as a higherdimensional linear dilaton vacuum in order to show that such a remnant modelcannot radiate and its temperature would be zero. In addition to this, theentropy conservation in the higher dimensional linear dilaton black holes isalso discussed. In summary, we show in detail that the information can alsoleak out from the linear dilaton black holes together with preserving unitarityin quantum mechanics.
机译:最近已经表明,在应用隧道公式而不考虑量子引力效应的情况下,在各种理论中线性狄拉通黑洞的霍金辐射中的信息丢失了。在这封信中,我们通过考虑对Bekenstein-Hawking熵的对数区域校正和发射的量子之间的统计相关性,重新计算发射概率。突出了黑洞提醒信息守恒的关键作用。我们将残余物建模为高维线性膨胀拉登真空,以表明这种残余物模型无法辐射并且其温度将为零。除此之外,还讨论了高维线性膨胀黑洞中的熵守恒。总而言之,我们详细显示了信息还可以在保留量子力学统一性的同时从线性dilaton黑洞中泄漏出来。

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