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On the mean-field spin glass transition

机译:关于平均场自旋玻璃化转变

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摘要

In this paper we analyze two main prototypes of disordered mean-field systems, namely the Sherrington-Kirkpatrick (SK) and the Viana-Bray (VB) models, to show that, in the framework of the cavity method, the transition from the annealed regime to a broken replica symmetry phase can be thought of as the failure of the saturability property (detailed explained along the paper) of the overlap fluctuations which act as the order parameters of the theory. We show furthermore how this coincides with the lacking of the commutativity of the infinite volume limit with respect to a, suitably chosen, vanishing perturbing field inducing the transition as prescribed by standard statistical mechanics. This is another step towards a complete theory of disordered systems. As a well known consequence it turns out that the annealed and the replica symmetric regions must coincide, implying that the averaged overlap is zero in this phase. Within our framework the finding of the values of the critical point for the SK and line for the VB becomes available straightforwardly and the method is of a large generality and applicable to several other mean field models.
机译:在本文中,我们分析了无序平均场系统的两个主要原型,即Sherrington-Kirkpatrick(SK)模型和Viana-Bray(VB)模型,以表明在腔方法的框架下,退火后的过渡断裂对称对称阶段的破坏机制可以被认为是重叠波动的可饱和性(详细解释见本文)的失败,该波动起理论上的阶次参数的作用。我们进一步展示了这与缺乏体积限制的可交换性相吻合,相对于一个适当选择的消失的扰动场,该场引起了标准统计机制所规定的过渡。这是朝着完整的无序系统理论迈出的又一步。作为众所周知的结果,事实证明,退火和复制对称区域必须重合,这意味着在此阶段,平均重叠为零。在我们的框架内,可以直接找到SK的临界点和VB的线的值,该方法具有广泛的通用性,并适用于其他几种平均场模型。

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