论文标题

在非炎性准周期系统中的多体定位

Many-body localization in a non-Hermitian quasi-periodic system

论文作者

Zhai, Liang-Jun, Yin, Shuai, Huang, Guang-Yao

论文摘要

在本研究中,研究了相互作用,拓扑,准碘和非热性之间的相互作用。选择了一维晶格上的硬核玻色子模型,并选择了不对称的跳和准碘式现场电位。该模型保留了时间反转对称性(TRS),将显示三种类型的相变:特征力的实际复合物转变,拓扑相变和多体定位(MBL)相变。对于较复杂的过渡,发现特征力的假想部分总是被MBL抑制。此外,通过计算绕组数,可以随着潜在振幅的增加而揭示拓扑相变,我们发现行为与单粒子系统完全不同。基于我们的数值结果,我们猜想这三种类型的相变位于热力学极限中的同一点,而准碘系统和无序系统的MBL转变应属于不同的通用类别。最后,我们证明了这些相变可以深刻影响非铁体多体系统的动态。

In the present study, the interplay among interaction, topology, quasiperiodicity, and non-Hermiticity is studied. The hard-core bosons model on a one-dimensional lattice with asymmetry hoppings and quasiperiodic onsite potentials is selected. This model, which preserves time-reversal symmetry (TRS), will exhibit three types of phase transition: real-complex transition of eigenenergies, topological phase transition and many-body localization (MBL) phase transition. For thereal-complex transition, it is found that the imaginary parts of the eigenenergies are always suppressed by the MBL. Moreover, by calculating the winding number, a topological phase transition can be revealed with the increase of potential amplitude, and we find that the behavior is quite different from the single-particle systems. Based on our numerical results, we conjecture that these three types of phase transition occur at the same point in the thermodynamic limit, and the MBL transition of quasiperiodic system and disordered system should belong to different universality classes. Finally, we demonstrate that these phase transitions can profoundly affect the dynamics of the non-Hermitian many-body system.

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