论文标题
在PXP模型中驱动量子多体疤痕
Driving quantum many-body scars in the PXP model
论文作者
论文摘要
定期驾驶已被确定为一种强大的技术,用于工程的物质新阶段和本质上平衡现象,例如时间晶体。 Bluvstein等人的最新工作。 [Science 371,1355(2021)]证明,定期驾驶还可以导致量子多体疤痕的显着增强,从而某些不可积分系统可以从特殊初始状态显示持续的量子复兴。然而,驾驶引起的疤痕增强背后的机制仍然鲜为人知。在这里,我们报告了一项详细的研究,详细研究了周期性驾驶对PXP模型的影响,该模型描述了在强大的Rydberg封锁存在下 - 量子多体疤痕的典型静态模型。我们表明,定期调制化学电位会产生丰富的相图,至少有两种不同类型的疤痕方案,我们通过检查其浮雕光谱来区分它们。我们根据一系列方形脉冲制定了一个玩具模型,该模型可以准确捕获疤痕动力学的细节,并允许在大振幅和高频驱动机制中进行分析治疗。最后,我们指出,在空间不均匀的化学势上驾驶可以通过类似于p预屑化的机制来稳定从PXP模型中任意初始状态的量子复兴。
Periodic driving has been established as a powerful technique for engineering novel phases of matter and intrinsically out-of-equilibrium phenomena such as time crystals. Recent work by Bluvstein et al. [Science 371, 1355 (2021)] has demonstrated that periodic driving can also lead to a significant enhancement of quantum many-body scarring, whereby certain non-integrable systems can display persistent quantum revivals from special initial states. Nevertheless, the mechanisms behind driving-induced scar enhancement remain poorly understood. Here we report a detailed study of the effect of periodic driving on the PXP model describing Rydberg atoms in the presence of a strong Rydberg blockade - the canonical static model of quantum many-body scarring. We show that periodic modulation of the chemical potential gives rise to a rich phase diagram, with at least two distinct types of scarring regimes that we distinguish by examining their Floquet spectra. We formulate a toy model, based on a sequence of square pulses, that accurately captures the details of the scarred dynamics and allows for analytical treatment in the large-amplitude and high-frequency driving regimes. Finally, we point out that driving with a spatially inhomogeneous chemical potential allows to stabilize quantum revivals from arbitrary initial states in the PXP model, via a mechanism similar to prethermalization.