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Manipulating and trapping light with photonic crystals from fundamental studies to practical applications

机译:从光子晶体操纵和捕获光,从基础研究到实际应用

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摘要

Photonic crystal technology, which was initially proposed as a way to realize nanoscale nanocavities and nanowaveguides, is now finding applications as a surface interface layer technology for light-emitting diodes with high brightness and solar cells with high conversion efficiency. On the other hand, nanocavities, which can efficiently confine light in an ultrasmall footprint with significantly enhanced photon lifetime, have greatly contributed to cavity quantum electrodynamics studies. Such nanocavities have also realized prototypes of ultralow-power functional devices and high-density integrated photonic circuits. In this review article, I focus on planar and two-dimensional slab photonic crystal and related structures, which have played major roles in both fundamental studies and device applications.
机译:光子晶体技术最初是作为实现纳米级纳米腔和纳米波导的一种方法提出的,现在正作为表面界面层技术在具有高亮度的发光二极管和具有高转换效率的太阳能电池中得到应用。另一方面,纳米腔可以有效地将光限制在超小面积内,并显着提高了光子的寿命,极大地促进了腔量子电动力学的研究。这种纳米腔还实现了超低功耗功能器件和高密度集成光子电路的原型。在这篇综述文章中,我重点介绍平面和二维平板光子晶体及其相关结构,它们在基础研究和器件应用中都发挥了重要作用。

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