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首页> 外文期刊>Nuclear physics, B >Phase structures of 4D stringy charged black holes in canonical ensemble
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Phase structures of 4D stringy charged black holes in canonical ensemble

机译:典型合奏中4D带电黑洞的相结构

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摘要

We study the thermodynamics and phase structures of the asymptotically flat dilatonic black holes in 4 dimensions, placed in a cavity a la York, in string theory for an arbitrary dilaton coupling. We consider these charged black systems in canonical ensemble for which the temperature at the wall of and the charge inside the cavity are fixed. We find that the dilaton coupling plays the key role in the underlying phase structures. The connection of these black holes to higher dimensional brane systems via diagonal (double) and/or direct dimensional reductions indicates that the phase structures of the former may exhaust all possible ones of the latter, which are more difficult to study, under conditions of similar settings. Our study also shows that a diagonal (double) dimensional reduction preserves the underlying phase structure while a direct dimensional reduction has the potential to change it.
机译:我们在弦论中研究任意Dilaton耦合的4个维度上渐近平展的Dilatonic黑洞的热力学和相结构,该黑洞放置在约克腔中。我们在规范的集合中考虑这些带电的黑色系统,对于这些系统,壁的温度和腔体内的电荷是固定的。我们发现,膨胀子耦合在基础相结构中起关键作用。这些黑洞通过对角线(双)和/或直接尺寸缩小与高维的皮氏系统的连接表明,前者的相结构可能会耗尽后者的所有可能的结构,而后者在相似的条件下更难研究。设置。我们的研究还表明,对角(二维)尺寸缩小保留了基本的相结构,而直接尺寸尺寸缩小有可能改变它。

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