Excitation of 87Rb Rydberg atoms to nS and nD states (n≤68) via an optical nanofiber

Alexey Vylegzhanin, Dylan J. Brown, Aswathy Raj, Danil F. Kornovan, Jesse L. Everett, Etienne Brion, Jacques Robert, Síle Nic Chormaic
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Abstract

Cold Rydberg atoms are a promising platform for quantum technologies, and combining them with optical waveguides has the potential to create robust quantum information devices. Here, we experimentally observe the excitation of cold rubidium atoms to a large range of Rydberg S and D states through interaction with the evanescent field of an optical nanofiber. We develop a theoretical model to account for experimental phenomena present such as the AC Stark shifts and the Casimir–Polder interaction. This work strengthens the knowledge of Rydberg atom interactions with optical nanofibers and is a critical step toward the implementation of all-fiber quantum networks and waveguide quantum electrodynamics (QED) systems using highly excited atoms.
通过纳米光纤激发87Rb里德伯原子到n≤68的nS和nD态
冷里德伯原子是量子技术的一个很有前途的平台,将它们与光波导结合起来有可能创造出强大的量子信息设备。在这里,我们通过实验观察了冷铷原子通过与光学纳米纤维的倏逝场相互作用激发到大范围的里德堡S和D态。我们开发了一个理论模型来解释目前的实验现象,如AC斯塔克位移和卡西米尔-波尔德相互作用。这项工作加强了对里德伯原子与光学纳米纤维相互作用的认识,是实现全光纤量子网络和使用高激发原子的波导量子电动力学(QED)系统的关键一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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