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Oscillons solitons and domain walls in arrays of nonlinear plasmonic nanoparticles

机译:非线性等离激元纳米粒子阵列中的Oscillons孤子和畴壁

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摘要

The study of metal nanoparticles plays a central role in the emerging novel technologies employing optics beyond the diffraction limit. Combining strong surface plasmon resonances, high intrinsic nonlinearities and deeply subwavelength scales, arrays of metal nanoparticles offer a unique playground to develop novel concepts for light manipulation at the nanoscale. Here we suggest a novel principle to control localized optical energy in chains of nonlinear subwavelength metal nanoparticles based on the fundamental nonlinear phenomenon of modulation instability. In particular, we demonstrate that modulation instability can lead to the formation of long-lived standing and moving nonlinear localized modes of several distinct types such as bright and dark solitons, oscillons, and domain walls. We analyze the properties of these nonlinear localized modes and reveal different scenarios of their dynamics including transformation of one type of mode to another. We believe this work paves a way towards the development of nonlinear nanophotonics circuitry.
机译:金属纳米颗粒的研究在采用衍射极限以外的光学技术的新兴技术中起着核心作用。结合了强大的表面等离子体共振,高固有非线性和深亚波长尺度,金属纳米颗粒阵列提供了一个独特的场所,可为纳米尺度的光控制开发新的概念。在这里,我们提出了一种新的原理,即基于调制不稳定性的基本非线性现象来控制非线性亚波长金属纳米颗粒链中的局部光能。特别是,我们证明了调制不稳定性会导致形成几种不同类型的长寿命站立和运动非线性局部模式,例如明亮和黑暗的孤子,振荡子和畴壁。我们分析了这些非线性局部模式的性质,并揭示了其动力学的不同情况,包括将一种模式转换为另一种模式。我们相信这项工作为非线性纳米光子学电路的发展铺平了道路。

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