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首页> 外文期刊>Physical review letters >Creation and Manipulation of Stable Dark Solitons and Vortices in Microcavity Polariton Condensates
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Creation and Manipulation of Stable Dark Solitons and Vortices in Microcavity Polariton Condensates

机译:微腔高凝固凝聚物中稳定暗孤子和涡旋的创作和操纵

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摘要

Solitons and vortices obtain widespread attention in different physical systems as they offer potential use in information storage, processing, and communication. In exciton-polariton condensates in semiconductor microcavities, solitons and vortices can be created optically. However, dark solitons are unstable and vortices cannot be spatially controlled. In the present work we demonstrate the existence of stable dark solitons and vortices under nonresonant incoherent excitation of a polariton condensate with a simple spatially periodic pump. In one dimension, we show that an additional coherent light pulse can be used to create or destroy a dark soliton in a controlled manner. In two dimensions we demonstrate that a coherent light beam can be used to move a vortex to a specific position on the lattice or be set into motion by simply switching the periodic pump structure from two-dimensional (lattice) to one-dimensional (stripes). Our theoretical results open up exciting possibilities for optical on-demand generation and control of dark solitons and vortices in polariton condensates.
机译:孤子和涡流在不同的物理系统中获得广泛的注意,因为它们提供信息存储,处理和通信的潜在使用。在Exciton-Polariton中,半导体微腔冷凝物,可以光学地创建孤子和漩涡。然而,暗孤子是不稳定的,并且不能在空间控制涡流。在目前的工作中,我们展示了在具有简单空间周期性泵的极性凝聚物的非族聚合物凝结下的稳定黑暗孤子和涡流的存在。在一个维度中,我们表明,可以使用额外的相干光脉冲以受控方式创造或破坏暗孤子。在两个维度中,我们证明了相干光束可用于将涡流移动到晶格上的特定位置,或者通过简单地将周期性泵结构从二维(晶格)切换到一维(条带)来设置运动。 。我们的理论结果开辟了光学点播生成和控制黑暗孤子和Polariton凝聚液的昏暗的控制的令人兴奋的可能性。

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  • 来源
    《Physical review letters》 |2017年第17期|157401.1-157401.6|共6页
  • 作者单位

    Univ Paderborn Dept Phys Warburger Str 100 D-33098 Paderborn Germany|Univ Paderborn Ctr Optoelect & Photon Paderborn CeOPP Warburger Str 100 D-33098 Paderborn Germany;

    Friedrich Schiller Univ Jena Inst Condensed Matter Theory & Solid State Opt Abbe Ctr Photon Max Wien Pl 1 D-07743 Jena Germany;

    Univ Paderborn Dept Phys Warburger Str 100 D-33098 Paderborn Germany|Univ Paderborn Ctr Optoelect & Photon Paderborn CeOPP Warburger Str 100 D-33098 Paderborn Germany;

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