Entangling Two Giant Atoms via a Topological Waveguide

IF 4.4 Q1 OPTICS Advanced quantum technologies Pub Date : 2024-05-05 DOI:10.1002/qute.202400030
Wen-Bin Luo, Xian-Li Yin, Jie-Qiao Liao
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Abstract

The entanglement generation of two two-level giant atoms coupled to a photonic waveguide, which is formed by a Su–Schrieffer–Heeger (SSH) type coupled-cavity array is studied. Here, each atom is coupled to the waveguide through two coupling points.The two-atom separate-coupling case is studied, and 16 coupling configurations are considered for the coupling-point distributions between the two atoms and the waveguide. Quantum master equations are derived to govern the evolution of the two atoms and characterize atomic entanglement by calculating the concurrence of the two-atom states. It is found that the two giant-atom entanglement depends on the coupling configurations and the coupling-point distance of the giant atoms. In particular, the entanglement dynamics of the two giant atoms in 14 coupling configurations depend on the dimerization parameter of the SSH waveguide. According to the self-energies of the two giant atoms, it is found that ten of these 16 coupling configurations can be divided into five pairs. It is also showed that the delayed sudden birth of entanglement between the two giant atoms is largely enhanced in these five pairs of coupling configurations. This work will promote the study of quantum effects and coherent manipulation in giant-atom topological-waveguide-QED.

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通过拓扑波导纠缠两个巨原子
研究了由苏-施里弗-希格(SSH)型耦合腔阵列形成的光子波导上耦合的两个两级巨原子纠缠的产生。这里,每个原子通过两个耦合点与波导耦合。研究了双原子分离耦合情况,并考虑了两个原子与波导之间耦合点分布的 16 种耦合配置。推导出了量子主方程来控制两个原子的演化,并通过计算两个原子状态的一致性来描述原子纠缠。研究发现,两个巨原子的纠缠取决于巨原子的耦合构型和耦合点距离。特别是,两个巨原子在 14 种耦合构型中的纠缠动态取决于 SSH 波导的二聚化参数。根据两个巨原子的自能,发现这 16 个耦合构型中的 10 个可分为 5 对。研究还表明,在这五对耦合构型中,两个巨原子之间的纠缠延迟猝发在很大程度上得到了增强。这项工作将促进巨原子拓扑波导-QED 中量子效应和相干操纵的研究。
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