【2h】

Plasmonics with two-dimensional conductors

机译:二维导体等离子

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摘要

A wealth of effort in photonics has been dedicated to the study and engineering of surface plasmonic waves in the skin of three-dimensional bulk metals, owing largely to their trait of subwavelength confinement. Plasmonic waves in two-dimensional conductors, such as semiconductor heterojunction and graphene, contrast the surface plasmonic waves on bulk metals, as the former emerge at gigahertz to terahertz and infrared frequencies well below the photonics regime and can exhibit far stronger subwavelength confinement. This review elucidates the machinery behind the unique behaviours of the two-dimensional plasmonic waves and discusses how they can be engineered to create ultra-subwavelength plasmonic circuits and metamaterials for infrared and gigahertz to terahertz integrated electronics.
机译:光子学方面的大量努力一直致力于三维体金属的皮肤表面等离激元波的研究和工程化,这在很大程度上归因于它们的亚波长限制特性。二维导体(例如半导体异质结和石墨烯)中的等离子波与块状金属上的表面等离激元波形成对比,因为前者出现在千兆赫兹至太赫兹,并且红外频率远低于光子学状态,并且可以表现出更强的亚波长限制。这篇综述阐明了二维等离激元波独特行为背后的机制,并讨论了如何对其进行工程设计以创建用于红外和千兆赫兹至太赫兹集成电子产品的超亚波长等离激元电路和超材料。

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