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首页> 外文期刊>Journal of the Physical Society of Japan >Snapshot Spectrum and Critical Phenomenon for Two-Dimensional Classical Spin Systems
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Snapshot Spectrum and Critical Phenomenon for Two-Dimensional Classical Spin Systems

机译:二维经典自旋系统的快照光谱和临界现象

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摘要

We investigate the eigenvalue distribution of the snapshot density matrix (SDM) generated by Monte Carlo simulation for two-dimensional classical spin systems. We find that the distribution in the high-temperature limit is well explained by the random-matrix theory, while that in the low-temperature limit can be characterized by the zero-eigenvalue condensation. At the critical point, we obtain the power-law distribution with a nontrivial exponent alpha equivalent to (2 - eta)/(1 - eta) and the asymptotic form of the snapshot entropy, on the basis of the relationship of the SDM with the correlation function matrix. The aspect-ratio dependence of the SDM spectrum is also mentioned.
机译:我们调查的蒙特卡罗模拟二维经典自旋系统生成的快照密度矩阵(SDM)的特征值分布。我们发现随机极限理论很好地解释了高温极限下的分布,而低温极限下的分布可通过零特征值凝聚来表征。在临界点,根据SDM与SDM的关系,我们获得了具有(2-eta)/(1-eta)的非平凡指数alpha和快照熵的渐近形式的幂律分布。相关函数矩阵。还提到了SDM频谱的长宽比依赖性。

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