Yang Sheng, Xu Jing-Bo
Zhejiang Institute of Modern Physics and Department of Physics, Zhejiang University, Hangzhou 310027, China.
Phys Rev E. 2022 Sep;106(3-1):034121. doi: 10.1103/PhysRevE.106.034121.
Rydberg atom arrays have recently emerged to be a promising platform for the exploration of exotic quantum phases of matter and quantum phenomena. In this work, we map out the ground-state phase diagram of Rydberg atoms on a honeycomb lattice as a function of the Rydberg blockade radius and the laser detuning by performing large-scale finite-size density matrix renormalization group simulations. Apart from a featureless disordered phase, we find five other intricate long-range density-wave-ordered phases within a relatively wide parameter space. The properties of these quantum phases are analyzed by calculating their Rydberg excitation profiles and static structure factors. In addition, a continuous quantum phase transition belonging to the (2+1)-dimensional Ising universality class is explored by a standard finite-size scaling analysis. Our work implies some different physics, such as the possible nontrivial quantum phase transitions and a highly degenerate string ordered phase, that a honeycomb geometry could bring to the Rydberg system and serves as a numerical guide for possible real experiments.
里德堡原子阵列最近已成为探索奇异量子物质相和量子现象的一个很有前景的平台。在这项工作中,我们通过进行大规模有限尺寸密度矩阵重整化群模拟,绘制了蜂窝晶格上里德堡原子的基态相图,该相图是里德堡阻塞半径和激光失谐的函数。除了一个无特征的无序相之外,我们在相对较宽的参数空间内发现了其他五个复杂的长程密度波有序相。通过计算它们的里德堡激发谱和静态结构因子来分析这些量子相的性质。此外,通过标准的有限尺寸标度分析探索了属于(2 + 1)维伊辛普适类的连续量子相变。我们的工作揭示了一些不同的物理现象,比如可能存在的非平凡量子相变和高度简并的弦序相,这些是蜂窝几何结构可能给里德堡系统带来的,并且为可能的实际实验提供了数值指导。