论文标题

在随机的非热系统中的副本对称性破裂

Replica Symmetry Breaking in Random Non-Hermitian Systems

论文作者

García-García, Antonio M., Jia, Yiyang, Rosa, Dario, Verbaarschot, Jacobus J. M.

论文摘要

最近的研究表明,虫洞对重力路径积分的贡献与在自旋玻璃和其他无序系统中观察到的复制对称性破坏现象之间的相似之处。有趣的是,这些配置对于解释量子黑洞的信息悖论也可能很重要。在这些事态发展的推动下,我们研究了$ pt $ - 符合系统的热力学特性,该系统由两个随机的非铁汉顿人组成,它们之间没有明确的耦合。进行整体平均后,我们在数值和分析上以量子混沌动力学的自由能的数值和分析识别稳健的一阶相变:随机矩阵的椭圆吉尼伯集合和非赫米蒂安的sachdev-ye-kitaev(Syk)模型。 Ginibre模型的自由能在低温相中是温度无关的。 SYK模型对于足够低温的行为具有相似的行为,然后在一阶过渡之前,它可能会连续过渡到具有温度依赖性自由能的相位。我们确定一阶相变的顺序参数,并获得临界温度的分析表达式。过渡背后的机制是复制对称性破坏配置的左右复制品,这些复制品控制了分区函数的低温极限。我们推测,对于低温极限,观察到的异型副本对称性断裂构型的优势可能是必要的。

Recent studies have revealed intriguing similarities between the contribution of wormholes to the gravitational path integral and the phenomenon of replica symmetry breaking observed in spin glasses and other disordered systems. Interestingly, these configurations may also be important for the explanation of the information paradox of quantum black holes. Motivated by these developments, we investigate the thermodynamic properties of a $PT$-symmetric system composed of two random non-Hermitian Hamiltonians with no explicit coupling between them. After performing ensemble averaging, we identify numerically and analytically a robust first-order phase transition in the free energy of two models with quantum chaotic dynamics: the elliptic Ginibre ensemble of random matrices and a non-Hermitian Sachdev-Ye-Kitaev (SYK) model. The free energy of the Ginibre model is temperature-independent in the low-temperature phase. The SYK model has a similar behavior for sufficiently low temperature, then it experiences a possible continuous phase transition to a phase with a temperature-dependent free energy before the first-order transition takes place at a higher temperature. We identify the order parameter of the first-order phase transition and obtain analytical expressions for the critical temperature. The mechanism behind the transition is the existence of replica symmetry breaking configurations coupling Left and Right replicas that control the low-temperature limit of the partition function. We speculate that quantum chaos may be necessary for the observed dominance of off-diagonal replica symmetry breaking configurations in the low-temperature limit.

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