Brenes Marlon, LeBlond Tyler, Goold John, Rigol Marcos
School of Physics, Trinity College Dublin, College Green, Dublin 2, Ireland.
Department of Physics, The Pennsylvania State University, University Park, Pennsylvania 16802, USA.
Phys Rev Lett. 2020 Aug 14;125(7):070605. doi: 10.1103/PhysRevLett.125.070605.
Eigenstate thermalization is widely accepted as the mechanism behind thermalization in generic isolated quantum systems. Using the example of a single magnetic defect embedded in the integrable spin-1/2 XXZ chain, we show that locally perturbing an integrable system can give rise to eigenstate thermalization. Unique to such setups is the fact that thermodynamic and transport properties of the unperturbed integrable chain emerge in properties of the eigenstates of the perturbed (nonintegrable) one. Specifically, we show that the diagonal matrix elements of observables in the perturbed eigenstates follow the microcanonical predictions for the integrable model, and that the ballistic character of spin transport in the integrable model is manifest in the behavior of the off-diagonal matrix elements of the current operator in the perturbed eigenstates.
本征态热化被广泛认为是一般孤立量子系统热化背后的机制。以嵌入可积自旋 - 1/2 XXZ链中的单个磁缺陷为例,我们表明对可积系统进行局部微扰可以导致本征态热化。此类设置的独特之处在于,未受微扰的可积链的热力学和输运性质出现在受微扰(不可积)链的本征态性质中。具体而言,我们表明受微扰本征态中可观测量的对角矩阵元遵循可积模型的微正则预测,并且可积模型中自旋输运的弹道特性在受微扰本征态中电流算符的非对角矩阵元行为中得以体现。