论文标题

用基质产品提取量子多体疤痕本特征状态

Extracting Quantum Many-Body Scarred Eigenstates with Matrix Product States

论文作者

Zhang, Shun-Yao, Yuan, Dong, Iadecola, Thomas, Xu, Shenglong, Deng, Dong-Ling

论文摘要

量子多体疤痕系统寄托于浸入热海洋中的非热激发本征素体。如果尚不清楚这些特殊特征状态的精确表达式,则在计算上要求它们与他们指数的许多热邻居区分开。我们提出了一种称为DMRG-S的矩阵产物态(MPS)算法,以在系统尺寸远远超出精确对角线范围的系统尺寸处提取此类状态。使用此技术,我们在多达80个地点的Rydberg阻断链中获得了疤痕的本征状状态,并进行有限尺寸的缩放研究,以解决热力学极限中Néel状态复兴的稳定性问题。我们的方法还提供了一种系统的方法,可以在没有先验知识的情况下获得目标能量附近的疤痕特征状态的精确MPS表示。特别是,我们在动力学约束的旋转和时钟模型中找到了具有精确MPS表示的几个新的疤痕本特征。我们工作中数值和分析研究的结合为未来的量子多体疤痕研究提供了一种新方法。

Quantum many-body scarred systems host nonthermal excited eigenstates immersed in a sea of thermal ones. In cases where exact expressions for these special eigenstates are not known, it is computationally demanding to distinguish them from their exponentially many thermal neighbors. We propose a matrix-product-state (MPS) algorithm, dubbed DMRG-S, to extract such states at system sizes far beyond the scope of exact diagonalization. Using this technique, we obtain scarred eigenstates in Rydberg-blockaded chains of up to 80 sites and perform a finite-size scaling study to address the lingering question of the stability for the Néel state revivals in the thermodynamic limit. Our method also provides a systematic way to obtain exact MPS representations for scarred eigenstates near the target energy without a priori knowledge. In particular, we find several new scarred eigenstates with exact MPS representations in kinetically constrained spin and clock models. The combination of numerical and analytical investigations in our work provides a new methodology for future studies of quantum many-body scars.

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