论文标题

非高铁多体系统中的弱神性破裂

Weak Ergodicity Breaking in Non-Hermitian Many-body Systems

论文作者

Chen, Qianqian, Chen, Shuai A., Zhu, Zheng

论文摘要

最近发现Rydberg-Atom量子模拟器中持续的复兴,发现一种被称为“量子多体疤痕”的弱渴望破坏性的机制,这是一组嵌入了其他热光谱中的非热状态。到目前为止,这种机制主要在Hermitian系统中进行了研究。在这里,我们建立了非高级量子多体疤痕,并系统地从动态复兴,纠缠熵,物理可观察物和能级统计数据中表征了它们的性质。值得注意的是,我们发现在接近特殊点时,非高量子多体疤痕表现出显着增强的相干复兴动力学。在实际到复杂的频谱转变之后,非热疤痕的签名从实际能量轴转换为虚拟能源轴,这是由于非热性的增加而驱动的,在该频谱转变中,同时存在异常点和一个量子三角临界点。我们进一步研究了非富量子多体疤痕对外场的稳定性,揭示了非铁量的量子关键性,并最终设置了整个相图。还探索了与开放量子多体系统的可能连接。我们的发现提供了实现非居民多体系统中长期连贯状态的见解。

The recent discovery of persistent revivals in the Rydberg-atom quantum simulator has revealed a weakly ergodicity-breaking mechanism dubbed quantum many-body scars, which are a set of nonthermal states embedded in otherwise thermal spectra. Until now, such a mechanism has been mainly studied in Hermitian systems. Here, we establish the non-Hermitian quantum many-body scars and systematically characterize their nature from dynamic revivals, entanglement entropy, physical observables, and energy level statistics. Notably, we find the non-Hermitian quantum many-body scars exhibit significantly enhanced coherent revival dynamics when approaching the exceptional point. The signatures of non-Hermitian scars switch from the real-energy axis to the imaginary-energy axis after a real-to-complex spectrum transition driven by increasing non-Hermiticity, where an exceptional point and a quantum tricritical point emerge simultaneously. We further examine the stability of non-Hermitian quantum many-body scars against external fields, reveal the non-Hermitian quantum criticality and eventually set up the whole phase diagram. The possible connection to the open quantum many-body systems is also explored. Our findings offer insights for realizing long-lived coherent states in non-Hermitian many-body systems.

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