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首页> 外文期刊>The journal of high energy physics >Solving puzzles in deformed JT gravity: phase transitions and non-perturbative effects
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Solving puzzles in deformed JT gravity: phase transitions and non-perturbative effects

机译:在变形的JT重力中求解谜题:相转变和非扰动效应

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A bstract Recent work has shown that certain deformations of the scalar potential in Jackiw-Teitelboim gravity can be written as double-scaled matrix models. However, some of the deformations exhibit an apparent breakdown of unitarity in the form of a negative spectral density at disc order. We show here that the source of the problem is the presence of a multi-valued solution of the leading order matrix model string equation. While for a class of deformations we fix the problem by identifying a first order phase transition, for others we show that the theory is both perturbatively and non-perturbatively inconsistent. Aspects of the phase structure of the deformations are mapped out, using methods known to supply a non-perturbative definition of undeformed JT gravity. Some features are in qualitative agreement with a semi-classical analysis of the phase structure of two-dimensional black holes in these deformed theories.
机译:Bstract最近的工作表明,JackiW-Teitelboim重力中的标量电位的某些变形可以写作双缩放的矩阵模型。 然而,一些变形在光盘顺序处以负光谱密度的形式表现出明显的统一分解。 我们在这里展示了问题的来源是存在前导矩阵模型字符串方程的多值解决方案。 虽然对于一类变形,我们通过识别其其他人来解决问题,而我们表明该理论既触扰和非扰动则不一致。 使用已知的方法来映射变形的相位结构的各方面,用于提供未变形的JT重力的非扰动定义。 一些特征在于这些变形理论中的二维黑洞相位结构的半古典分析。

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