论文标题
一维原子阵列中的浓缩亚基模式和手性波导
Concentrated subradiant modes in one-dimensional atomic array coupled with chiral waveguides
论文作者
论文摘要
非富裕系统最近引起了广泛的兴趣,并表现出了有趣的身体现象,其中非铁皮皮肤效应是希望进行详细研究的最引人注目的量子现象之一,并且在各种费米子和波斯型系统中得到了广泛的研究。在这里,我们提出了一个由倾斜的一维原子阵列组成的非热原子 - 波导系统,并与两个相同的手力相同的波导阵列结合。这样的系统创建了一个有效的晶格模型,包括通过手性波导光子介导的相互作用的非重点长远程跳跃。我们发现集体原子态的激发集中在中间界面中,指向与次级模式相关的非富甲皮肤效应,而相反,超级模式表现出扩展的特征。仿真结果表现出次化漏斗效应,对小原子位置疾病具有稳健性。我们的工作基于开放量子系统中非富甲皮肤效应的基本理解,还提供了在量子光学元件领域研究非炎症系统的前瞻性途径。
Non-Hermitian systems have recently attracted broad interest and exhibited intriguing physical phenomena, in which the non-Hermitian skin effect is one of the most remarkable quantum phenomena desiring detailed investigations and has been widely studied in various fermionic and bosonic systems. Here we propose a non-Hermitian atom-waveguide system composed of a tilted one-dimensional atomic array coupled with two identical waveguides with opposite chiralities. Such system creates an effective lattice model including nonreciprocal long-range hoppings through the chiral-waveguide photon-mediated interactions. We find the excitation of the collective atomic states concentrates in the middle interface, pointing towards the non-Hermitian skin effect associated with subradiant modes, while, on the contrary, superradiant modes exhibit extended features. Simulation results present subradiant funneling effect, with robustness against small atomic position disorders. Our work underpins the fundamental comprehension towards the non-Hermitian skin effect in open quantum systems and also provide prospective paths to study non-Hermitian systems in the area of quantum optics.