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平面原子阵列中的强亚辐射态

Strongly subradiant states in planar atomic arrays.

作者信息

Volkov Ilya A, Ustimenko Nikita A, Kornovan Danil F, Sheremet Alexandra S, Savelev Roman S, Petrov Mihail I

机构信息

Department of Physics, ITMO University, Saint-Petersburg, Russia.

出版信息

Nanophotonics. 2024 Jan 31;13(3):289-298. doi: 10.1515/nanoph-2023-0624. eCollection 2024 Feb.

Abstract

The optically trapped ensembles of atoms provide a versatile platform for storing and coherent manipulation of quantum information. However, efficient realization of quantum information processing requires long-lived quantum states protected from the decoherence e.g. via spontaneous emission. Here, we theoretically study collective dipolar oscillations in finite planar arrays of quantum emitters in free space and analyze mechanisms that govern the emergence of strongly subradiant collective states. We demonstrate that the external coupling between the collective states associated with the symmetry of the array and with the quasi-flat dispersion of the corresponding infinite lattice plays a crucial role in the boost of their radiative lifetime. We show that among different regular arrangements of the atoms the square atomic arrays support eigenstates with minimal radiative losses scaled with the total number of atoms .

摘要

光学捕获的原子系综为量子信息的存储和相干操纵提供了一个通用平台。然而,要高效实现量子信息处理,需要有长寿命的量子态来抵御退相干,例如通过自发辐射导致的退相干。在此,我们从理论上研究了自由空间中有限平面量子发射器阵列中的集体偶极振荡,并分析了控制强亚辐射集体态出现的机制。我们证明,与阵列对称性相关的集体态和相应无限晶格的准平坦色散之间的外部耦合,在提高其辐射寿命方面起着关键作用。我们表明,在原子的不同规则排列中,方形原子阵列所支持的本征态具有与原子总数成比例的最小辐射损耗。

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