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表面等离子体激元在等离子体纳米腔中的共振隧穿。

Resonant tunneling of surface plasmon polariton in the plasmonic nano-cavity.

作者信息

Park Junghyun, Kim Hwi, Lee Il-Min, Kim Seyoon, Jung Jaehoon, Lee Byoungho

机构信息

National Creative Research Center for Active Plasmonics Application Systems, Inter-University Semiconductor Research Center and School of Electrical EngineeringSeoul National University, Gwanak-Gu Sillim-Dong, Seoul, Korea

出版信息

Opt Express. 2008 Oct 13;16(21):16903-15. doi: 10.1364/oe.16.016903.

Abstract

We investigate the reflection and transmission characteristics of the low-dielectric constant cut off barrier in the metal-insulator-metal (MIM) waveguide and propose a novel plasmonic nano-cavity made of two cut off barriers and the waveguide between them. It is shown that the anti-symmetric mode in the MIM waveguide with the core of the low dielectric constant below the specific value cannot be supported and this region can be regarded as a cut off barrier with high stability. The phase shift due to the reflection at the finite-length cut off barrier is calculated and the design scheme of the cavity length for the resonant tunneling is presented. The transmission spectra through the proposed nano-cavity are also discussed.

摘要

我们研究了金属-绝缘体-金属(MIM)波导中低介电常数截止势垒的反射和传输特性,并提出了一种由两个截止势垒及其间波导构成的新型等离子体纳米腔。结果表明,当低介电常数核心低于特定值时,MIM波导中的反对称模式无法被支持,该区域可被视为具有高稳定性的截止势垒。计算了有限长度截止势垒处反射引起的相移,并给出了共振隧穿腔长的设计方案。还讨论了通过所提出的纳米腔的透射谱。

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