论文标题

超低rydberg原子中多体疤痕的对应原理

Correspondence principle for many-body scars in ultracold Rydberg atoms

论文作者

Turner, Christopher J., Desaules, Jean-Yves, Bull, Kieran, Papić, Zlatko

论文摘要

量子疤痕的理论 - 对量子独特的遗传性的显着侵犯 - 取决于两个互补支柱:不稳定的经典周期轨道的存在以及所谓的准烟群,即非癌症状态,这些状态与少数系统的特征构成的量子强烈重叠。最近,在雷德伯格原子链的多体环境中,对量子疤痕的兴趣已恢复。虽然以前的理论工作已经使用时间依赖性变分原理(TDVP)确定了此类系统的周期性轨道,但周期性轨道和准示象之间的链接已丢失。在这里,我们为不可融合的Rydberg Atom模型提供了概念上的简单分析构建,并证明它们是由先前确定的周期性轨道的“重新构造”引起的,当量子波动恢复到所有订单中时。我们的结果阐明了TDVP经典系统,同时扮演着平均场近似和系统的经典限制的作用,从而使我们能够巩固Rydberg原子链中的特征性疤痕之间的类比。

The theory of quantum scarring -- a remarkable violation of quantum unique ergodicity -- rests on two complementary pillars: the existence of unstable classical periodic orbits and the so-called quasimodes, i.e., the non-ergodic states that strongly overlap with a small number of the system's eigenstates. Recently, interest in quantum scars has been revived in a many-body setting of Rydberg atom chains. While previous theoretical works have identified periodic orbits for such systems using time-dependent variational principle (TDVP), the link between periodic orbits and quasimodes has been missing. Here we provide a conceptually simple analytic construction of quasimodes for the non-integrable Rydberg atom model, and prove that they arise from a "requantisation" of previously established periodic orbits when quantum fluctuations are restored to all orders. Our results shed light on the TDVP classical system simultaneously playing the role of both the mean-field approximation and the system's classical limit, thus allowing us to firm up the analogy between the eigenstate scarring in the Rydberg atom chains and the single-particle quantum systems.

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