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Exploiting metamaterials, plasmonics and nanoantennas concepts in silicon photonics

机译:利用硅光子学中的超材料,等离激元和纳米天线概念

摘要

The interaction of light with subwavelength metallic nano-structures is at the heart of different current scientific hot topics, namely plasmonics, metamaterials and nanoantennas. Research in these disciplines during the last decade has given rise to new, powerful concepts providing an unprecedented degree of control over light manipulation at the nanoscale. However, only recently have these concepts been used to increase the capabilities of light processing in current photonic integrated circuits (PICs), which traditionally rely only on dielectric materials with element sizes larger than the light wavelength. Amongst the different PIC platforms, silicon photonics is expected to become mainstream, since manufacturing using well-established CMOS processes enables the mass production of low-cost PICs. In this review we discuss the benefits of introducing recent concepts arisen from the fields of metamaterials, plasmonics and nanoantennas into a silicon photonics integrated platform. We review existing works in this direction and discuss how this hybrid approach can lead to the improvement of current PICs enabling novel and disruptive applications in photonics.
机译:光与亚波长金属纳米结构的相互作用是当前等科学热点话题的核心,这些话题是等离激元学,超材料和纳米天线。在过去的十年中,这些学科的研究产生了新的,强大的概念,为纳米级的光控制提供了前所未有的控制水平。但是,直到最近,这些概念才被用于增强当前光子集成电路(PIC)中光处理的能力,而这些光子集成电路传统上仅依赖于元件尺寸大于光波长的介电材料。在不同的PIC平台中,硅光子技术有望成为主流,因为使用成熟的CMOS工艺进行制造可以实现低成本PIC的批量生产。在这篇综述中,我们讨论了将超材料,等离子体和纳米天线领域中出现的最新概念引入硅光子集成平台的好处。我们将朝着这个方向回顾现有工作,并讨论这种混合方法如何导致当前PIC的改进,从而在光子学中实现新颖和突破性的应用。

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