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用于增强等离子体探测器中表面等离子体局域化的等离子耦合腔系统。

Plasmonic coupled-cavity system for enhancement of surface plasmon localization in plasmonic detectors.

机构信息

Plasmonics and Nanointegration Group, A*STAR Institute of High Performance Computing, 1 Fusionopolis Way, #16-16 Connexis, 138632, Singapore.

出版信息

Nanotechnology. 2012 Jul 11;23(27):275201. doi: 10.1088/0957-4484/23/27/275201. Epub 2012 Jun 18.

Abstract

A plasmonic coupled-cavity system, which consists of a quarter-wave coupler cavity, a resonant Fabry-Pérot detector nanocavity, and an off-resonant reflector cavity, is used to enhance the localization of surface plasmons in a plasmonic detector. The coupler cavity is designed based on transmission line theory and wavelength scaling rules in the optical regime, while the reflector cavity is derived from off-resonant resonator structures to attenuate transmission of plasmonic waves. We observed strong coupling of the cavities in simulation results, with an 86% improvement of surface plasmon localization achieved. The plasmonic coupled-cavity system may find useful applications in areas of nanoscale photodetectors, sensors, and an assortment of plasmonic-circuit devices.

摘要

一种等离子体耦合腔系统,由四分之一波耦合腔、谐振法布里-珀罗探测器纳米腔和非共振反射腔组成,用于增强等离子体探测器中表面等离子体的局域化。耦合腔基于传输线理论和光学波段的波长缩放规则设计,而反射腔则来自非共振谐振器结构,以衰减等离子体波的传输。我们在模拟结果中观察到了腔之间的强耦合,表面等离子体局域化的改善达到了 86%。等离子体耦合腔系统可能在纳米级光电探测器、传感器以及各种等离子体电路器件等领域有应用价值。

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