A microscopic description of black hole evaporation via holography

A microscopic description of black hole evaporation via holography
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通过全息术对黑洞蒸发的微观描述

DOI:
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发表时间:
2016
期刊:
影响因子:
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通讯作者:
J. Maltz
J. Maltz
中科院分区:
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文献类型:
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作者:
E. Berkowitz;M. Hanada;J. Maltz

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通过对对偶规范理论的定量求解,我们描述了IIA型超弦理论中一个大的冷黑洞(黑零膜)如何蒸发成自由传播的D0膜。当黑洞较大时,出射的D0膜的能谱在参数上接近热能。黑洞虽然一开始很冷,但随着蒸发,逐渐变成了一个极热、极细的物体。当它排放D0膜时,它的排放速度加快,完全蒸发,不留任何残留物。因此,这个系统为我们提供了一个没有信息损失的黑洞蒸发的具体全息描述。
We propose a description of how a large, cold black hole (black zero-brane) in type IIA superstring theory evaporates into freely propagating D0-branes, by solving the dual gauge theory quantitatively. The energy spectrum of emitted D0-branes is parametrically close to thermal when the black hole is large. The black hole, while initially cold, gradually becomes an extremely hot and stringy object as it evaporates. As it emits D0-branes, its emission rate speeds up and it evaporates completely without leaving any remnant. Hence this system provides us with a concrete holographic description of black hole evaporation without information loss.
晶格杨米尔斯理论模拟的黑洞热力学
DOI: 10.1103/physrevd.78.041502
发表时间: 2008
期刊: Physical Review D
影响因子: 5
作者:
Catterall S
通讯作者: Catterall S