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Unidirectional Spaser in Symmetry-Broken Plasmonic Core-Shell Nanocavity

机译:对称性破碎的等离子核-壳纳米腔中的单向Spaser

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摘要

The spaser, a quantum amplifier of surface plasmons by stimulated emission of radiation, is recognized as a coherent light source capable of confining optical fields at subwavelength scale. The control over the directionality of spasing has not been addressed so far, especially for a single-particle spasing nanocavity where optical feedback is solely provided by a plasmon resonance. In this work we numerically examine an asymmetric spaser – a resonant system comprising a dielectric core capped by a metal semishell. The proposed spaser emits unidirectionally along the axis of the semishell; this directionality depends neither on the incident polarization nor on the incident angle of the pump. The spasing efficiency of the semishell-capped resonator is one order of magnitude higher than that in the closed core-shell counterpart. Our calculations indicate that symmetry breaking can serve as a route to create unidirectional, highly intense, single-particle, coherent light sources at subwavelength scale.
机译:激射器是通过激发辐射发射而产生的表面等离子体激元的量子放大器,被认为是能够在亚波长范围内限制光场的相干光源。到目前为止,还没有解决对抽气的方向性的控制,特别是对于单粒子抽气纳米腔,其中仅通过等离子体激元共振提供光反馈。在这项工作中,我们用数字方法研究了一个不对称的spaser-一种共振系统,该共振系统包括一个被金属半壳覆盖的介电芯。提出的spaser沿半壳的轴单向发射。该方向性既不取决于入射极化,也不取决于泵的入射角。半壳式谐振器的抽动效率比封闭的核壳式谐振器的抽动效率高一个数量级。我们的计算表明,对称破坏可以作为在亚波长范围内创建单向,高强度,单粒子,相干光源的途径。

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