Exact many-body scars and their stability in constrained quantum chains

F. Surace, Matteo Votto, Eduardo Gonzalez Lazo, Alessandro Silva, M. Dalmonte, G. Giudici
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引用次数: 29

Abstract

Quantum scars are non-thermal eigenstates characterized by low entanglement entropy, initially detected in systems subject to nearest-neighbor Rydberg blockade, the so called PXP model. While most of these special eigenstates elude an analytical description and seem to hybridize with nearby thermal eigenstates for large systems, some of them can be written as matrix product states (MPS) with size-independent bond dimension. We study the response of these exact quantum scars to perturbations by analysing the scaling of the fidelity susceptibility with system size. We find that some of them are anomalously stable at first order in perturbation theory, in sharp contrast to the eigenstate thermalization hypothesis. However, this stability seems to breakdown when all orders are taken into account. We further investigate models with larger blockade radius and find a novel set of exact quantum scars, that we write down analytically and compare with the PXP exact eigenstates. We show that they exhibit the same robustness against perturbations at first order.
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精确的多体伤痕及其在受限量子链中的稳定性
量子伤痕是一种以低纠缠熵为特征的非热特征态,最初在受最近邻Rydberg封锁的系统中被检测到,即所谓的PXP模型。虽然这些特殊的特征态大多无法用解析方法描述,而且似乎与大型系统的热特征态相杂化,但其中一些特征态可以写成与键维无关的矩阵积态(MPS)。通过分析保真度磁化率随系统尺寸的变化规律,研究了这些精确量子疤痕对微扰的响应。我们发现它们中的一些在微扰理论中是一阶异常稳定的,与本征态热化假设形成鲜明对比。然而,当考虑到所有订单时,这种稳定性似乎就会崩溃。我们进一步研究了具有更大封锁半径的模型,并找到了一组新的精确量子疤痕,我们用解析的方式写下了它们,并与PXP精确特征态进行了比较。我们证明了它们对一阶扰动具有相同的鲁棒性。
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