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Two-dimensional optical gap solitons and vortices in a coherent atomic ensemble loaded on optical lattices

机译:在光学格子上装载的连贯原子合奏中的二维光学间隙孤子和涡旋

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Coherent atomic systems, e.g., resonantly cold atomic gases within which electromagnetically induced transparency (EIT) operates, have recently received great attention, because of their remarkable scientific properties and pivotal implications. Light behavior in such systems governed by various potentials is a new and interesting research focus, but missing literally report on two-dimensional (2D) localized gap modes in coherent atomic systems loaded on optical lattices. We survey such issue in a coherent atomic gas inside where the EIT turns on, trapped by 2D optical lattices-constituted by counter-propagating far-detuned Stark laser fields, in the framework of nonlinear Schrodinger equation derived from Maxwell-Bloch equations. Using the linear stability analysis and direct perturbed evolution we address the formation, property, and stability of 2D localized gap modes of two types, gap solitons and gap vortices, in forbidden band gaps of the underlying linear Blochwave spectrum. The former mode is fundamental gap solitons, and the latter belongs to higher-order gap solitons with embedded topological charge. Our results are helpful not only for in-depth understanding of soliton dynamics in coherent atomic ensemble loaded on periodic potentials, but also for laying the groundwork for forthcoming applications in optical communications and quantum information processing. (C) 2021 Elsevier B.V. All rights reserved.
机译:连贯的原子系统,例如,电磁诱导的透明度(EIT)经营的共振冷原子气体,最近受到了极大的关注,因为它们显着的科学性质和关键的影响。各种潜力管理的这种系统中的光线行为是一种新的和有趣的研究重点,但缺少关于在光学格的相干原子系统中的二维(2D)局部间隙模式的实际报告。我们调查了在从Maxwell-Bloch方程导出的非线性Schrodinger方程的非线性Schrodinger方程的框架中,通过反向传播的远离斑点激光领域构成的2D光学格子捕获的连贯原子气体中的这种问题。使用线性稳定性分析和直接扰动演化我们解决了两种类型,间隙孤子和间隙涡流的2D局部间隙模式的形成,属性和稳定性,在底层线性Bloch波波谱的禁区间隙中。前者模式是基本间隙孤子,后者属于具有嵌入式拓扑电荷的高阶间隙孤子。我们的结果不仅有助于深入了解孤子动态在连贯的原子合奏中加载的周期性电位,还用于为即将到来的光通信和量子信息处理中的应用程序奠定基础。 (c)2021 elestvier b.v.保留所有权利。

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