论文标题

在定期踢出的不增压光学拉曼晶格中,移动边缘和关键区域

Mobility edges and critical regions in periodically kicked incommensurate optical Raman lattice

论文作者

Wang, Yucheng

论文摘要

从传统上讲,将扩展状态与本地化状态分开的流动性边缘是理解安德森本地化过渡的核心概念。临界状态是被离域和非共生状态,是第三种基本状态,与扩展状态和局部状态不同。在这里,我们通过使用分形维度来研究定期踢出的准膜光学拉曼晶格中的定位现象。我们显示了一个丰富的相图,包括高频制度中的纯扩展,临界和局部阶段,将关键区域与扩展(局部)区域分开的ME,以及随着踢球时期的增加,扩展,临界和局部区域的共存阶段。我们还发现相位边界的脆弱性,这些脆弱性更容易受到动力学踢的影响,以及重新进入定位过渡的现象。最后,我们证明了如何根据当前的冷原子实验以及如何通过扩展动力学检测丰富的物理学来实现研究模型。我们的结果提供了研究和检测新颖的临界阶段,ME,共存量子阶段以及其他一些物理现象的见解。

Conventionally the mobility edge (ME) separating extended states from localized ones is a central concept in understanding Anderson localization transition. The critical state, being delocalized and non-ergodic, is a third type of fundamental state that is different from both the extended and localized states. Here we study the localization phenomena in a one dimensional periodically kicked quasiperiodic optical Raman lattice by using fractal dimensions. We show a rich phase diagram including the pure extended, critical and localized phases in the high frequency regime, the MEs separating the critical regions from the extended (localized) regions, and the coexisting phase of extended, critical and localized regions with increasing the kicked period. We also find the fragility of phase boundaries, which are more susceptible to the dynamical kick, and the phenomenon of the reentrant localization transition. Finally, we demonstrate how the studied model can be realized based on current cold atom experiments and how to detect the rich physics by the expansion dynamics. Our results provide insight into studying and detecting the novel critical phases, MEs, coexisting quantum phases, and some other physics phenomena in the periodically kicked systems.

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