Noh Jae Dong
Department of Physics, University of Seoul, Seoul 02504, Korea.
Phys Rev E. 2021 Jan;103(1-1):012129. doi: 10.1103/PhysRevE.103.012129.
We investigate the extent to which the eigenstate thermalization hypothesis (ETH) is valid or violated in the nonintegrable and the integrable spin-1/2 XXZ chains. We perform the energy-resolved analysis of statistical properties of matrix elements of observables in the energy eigenstate basis. The Hilbert space is divided into energy shells of constant width, and a block submatrix is constructed whose columns and rows correspond to the eigenstates in the respective energy shells. In each submatrix, we measure the second moment of off-diagonal elements in a column. The columnar second moments are distributed with a finite variance for finite-sized systems. We show that the relative variance of the columnar second moments decreases as the system size increases in the non-integrable system. The self-averaging behavior indicates that the energy eigenstates are statistically equivalent to each other, which is consistent with the ETH. In contrast, the relative variance does not decrease with the system size in the integrable system. The persisting eigenstate-to-eigenstate fluctuation implies that the matrix elements cannot be characterized with the energy parameters only. Our result explains the origin for the breakdown of the fluctuation dissipation theorem in the integrable system. The eigenstate-to-eigenstate fluctuations sheds a new light on the meaning of the ETH.
我们研究了在不可积和可积的自旋 - 1/2 XXZ链中,本征态热化假设(ETH)在何种程度上有效或被违反。我们在能量本征态基下对可观测量矩阵元的统计性质进行能量分辨分析。希尔伯特空间被划分为宽度恒定的能量壳,构建一个块子矩阵,其列和行分别对应于各个能量壳中的本征态。在每个子矩阵中,我们测量一列中非对角元的二阶矩。对于有限尺寸系统,列二阶矩以有限方差分布。我们表明,在不可积系统中,列二阶矩的相对方差随着系统尺寸的增加而减小。自平均行为表明能量本征态在统计上彼此等效,这与ETH一致。相比之下,在可积系统中,相对方差并不随系统尺寸减小。本征态到本征态的持续涨落意味着矩阵元不能仅由能量参数来表征。我们的结果解释了可积系统中涨落耗散定理失效的根源。本征态到本征态的涨落为ETH的含义提供了新的视角。