膜范式中的克尔黑洞

Q2 Physics and Astronomy Letters in High Energy Physics Pub Date : 2022-08-25 DOI:10.31526/lhep.2022.328
A. Arslanaliev, A. Nurmagambetov
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引用次数: 1

摘要

我们认为膜观点是关于旋转黑洞Kerr解的Parikh-Wilczek。计算近水平拉伸膜的应力能量张量,并将其与粘性流体的应力张量进行比较,我们根据Kerr几何恢复了传输系数。双流体的粘度保持不变,而其余的传输系数变成径向坐标和角度坐标的复函数。我们研究了两个特定黑洞的压力、膨胀和能量/动量密度的定性行为:角动量为黑洞质量平方的1%的缓慢旋转黑洞和极端克尔黑洞。对于Boyer-Lindquist坐标系中的Kerr解,根据固定角度方向,这些传输系数通常在黑洞的视界和Schwarzschild半径之间的范围内的径向坐标的不同值处具有极点。我们在膜范式和AdS/CFT对应关系、KSS界违反、坐标选择和Kerr解的非平稳扩展之间的关系的背景下简要讨论了我们的发现。
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Kerr Black Holes within the Membrane Paradigm
We consider the membrane viewpoint a l\`a Parikh-Wilczek on the Kerr solution for a rotating black hole. Computing the stress-energy tensor of a close-to-the-horizon stretched membrane and comparing it to the stress-tensor of a viscous fluid, we recover transport coefficients in terms of the Kerr geometry. Viscosities of the dual fluid remain constant, while the rest of the transport coefficients become complex functions of radial and angle coordinates. We study the qualitative behavior of the pressure, expansion, and energy/momentum densities for two specific black holes: the slowly rotating black hole, with the angular momentum of one percent of the black hole mass squared, and the extremal Kerr black hole. For the Kerr solution in the Boyer-Lindquist coordinates, these transport coefficients generally have poles at different values of the radial coordinate in the range between the horizon and the Schwarzschild radius of the black hole, in dependence on the fixed angle direction. We briefly discuss our findings in the context of a relation between the Membrane Paradigm and the AdS/CFT correspondence, the KSS bound violation, the coordinate choice, and a non-stationary extension of the Kerr solution.
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来源期刊
Letters in High Energy Physics
Letters in High Energy Physics Physics and Astronomy-Nuclear and High Energy Physics
CiteScore
1.20
自引率
0.00%
发文量
4
审稿时长
12 weeks
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