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Continuous transition between weak and ultrastrong coupling through exceptional points in carbon nanotube microcavity exciton-polaritons

机译:碳纳米管微透视激子 - 极性碳含量弱和超龙耦合的连续转变

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摘要

Non-perturbative coupling of photons and excitons produces hybrid particles, exciton-polaritons, which have exhibited a variety of many-body phenomena in various microcavity systems. However, the vacuum Rabi splitting (VRS), which defines the strength of photon-exciton coupling, is usually a single constant for a given system. Here, we have developed a unique architecture in which excitons in an aligned single-chirality carbon nanotube film interact with cavity photons in polarization-dependent manners. The system reveals ultrastrong coupling (VRS up to 329 meV or a coupling-strength-to-transition-energy ratio of 13.3%) for polarization parallel to the nanotube axis, whereas VRS is absent for perpendicular polarization. Between these two extremes, VRS is continuously tunable through polarization rotation with exceptional points separating crossing and anti-crossing. The points between exceptional points form equienergy arcs onto which the upper and lower polaritons coalesce. The demonstrated on-demand ultrastrong coupling provides ways to explore topological properties of polaritons and quantum technology applications.
机译:光子和激子的非扰动偶联产生杂化颗粒,激子 - 极性官,其在各种微腔系统中表现出各种许多体内现象。然而,定义光子激子耦合强度的真空Rabi分裂(VRS)通常是给定系统的单个常数。在这里,我们开发了一种独特的架构,其中在一个对齐的单人型碳纳米管膜中的激子与偏振依赖性举射的腔光子相互作用。该系统揭示了与纳米管轴平行于偏振的偏振偏振的超超速耦合(VRS高达329meV或耦合强度到过渡 - 能量比为13.3%),而VRS不存在垂直极化。在这两个极端之间,VRS通过极化旋转连续调谐,具有分离交叉和抗交流的异常点。特殊点之间的点形式扶正弧,上下极偏振片聚结。所证明的按需超龙耦合提供了探索Polaritons和量子技术应用的拓扑性质的方法。

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  • 来源
    《Nature photonics》 |2018年第6期|共7页
  • 作者单位

    Rice Univ Dept Elect &

    Comp Engn POB 1892 Houston TX 77251 USA;

    Rice Univ Dept Elect &

    Comp Engn POB 1892 Houston TX 77251 USA;

    Osaka Univ Dept Mat Engn Sci Toyonaka Osaka Japan;

    Rice Univ Dept Elect &

    Comp Engn POB 1892 Houston TX 77251 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
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