Quantum memory on atomic frequency comb in a plasmon-polariton waveguide

N. Arslanov, S. Moiseev
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Abstract

In this work, we present a nano-optical scheme of quantum memory for surface plasmon-polariton (SPP) modes in a nanoscale planar waveguide with a resonant atomic ensemble characterized by the periodic structure of the inhomogeneously broadened line. The theoretical study of the SPP modes is presented, where the regime of slow propagation and low-losses was found for these modes with fixed transverse spatial confinement, which provides a strong nondissipative interaction with resonant atoms. We describe the basic physical properties of the studied scheme and demonstrate a perspective area for the implementation of fast nanoscale quantum memory and processing with surface SPP modes.
等离子体-极化子波导中原子频率梳上的量子记忆
在这项工作中,我们提出了一种纳米光学方案,用于表面等离子体-极化子(SPP)模式的量子记忆,该模式在纳米平面波导中具有共振原子系综,其特征是非均匀加宽线的周期性结构。本文对SPP模式进行了理论研究,发现了具有固定横向空间约束的SPP模式具有慢传播和低损耗的状态,并与共振原子提供了强的非耗散相互作用。我们描述了所研究方案的基本物理性质,并展示了使用表面SPP模式实现快速纳米级量子存储和处理的前景。
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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