主题演讲Tu-K:等离子体学——用可扩展的、超快的技术取代光子学的途径?

J. Leuthold
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引用次数: 0

摘要

等离子体学越来越被吹捧为取代传统光子学的解决方案。事实上,新一代的被动和主动等离子体元素正在出现。与光子器件不同,这些等离子体元件的特点是占地面积很小,而且带宽几乎是无限的。然而,等离子体器件也有很高的损耗。接下来的问题是等离子体在何时何地能够真正发挥作用。在这次演讲中,我们将回顾和评论最新一代的等离子体器件,包括等离子体电光调制器、探测器、射频接收器、耦合器和波导,并将它们与依赖于传统硅技术的器件进行比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Keynote Tu-K: Plasmonics — A path to replace photonics by a scalable, ultrafast technology?
Plasmonics is increasingly touted as a solution to replace traditional photonics. And indeed, a new generation of passive and active plasmonic elements is emerging. Unlike photonic devices these plasmonic elements feature a tiny footprint in combination with an almost unlimited bandwidth. Yet, plasmonic devices also suffer from high losses. The question then is where and when plasmonics really can make a difference. In this talk, we will review and comment the latest generation of plasmonic devices encompassing plasmonic electro-optical modulators, detectors, RF-receivers, couplers and waveguides and compare them against devices relying on the traditional silicon technology.
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