Propagation Properties of Surface Plasmon along Metal Nano-Aperture and Nano-Wire

H. X. Yuan, B. Xu, T. Chong
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引用次数: 1

Abstract

Surface plasmon propagation properties for nano-sized metal aperture and nano-wire structures are studied based on the waveguide theory. It is verified that there are only TM0 and HE1 mode existing in both structures. For nano-wire structure, however, there is no cut-off radii for both TM0 and HE1 mode. On the contrast, there is a cut-off radius for nano-sized silver aperture structure, and even more, there are several characteristic radius coefficients a/lambda, - 0.32, 0.73. For each section, the EM wave may takes on different features, e.g.. totally-bounded features along the aperture interface for a/lambda > 0.73, or oscillation inside core or strong attenuation along z direction for 0.32 < a/lambda <0.73. HE1 mode of metal aperture doesn't show cutoff radius as well, but the wave-number along z direction monotonically increase with the radius coefficient a/lambda in contrast with existence of a characteristic radius coefficient a/lambda of 0.41 for nano-wire
表面等离激元沿金属纳米孔和纳米线的传输特性
基于波导理论研究了纳米金属孔径和纳米线结构表面等离子体的传输特性。验证了两种结构中只存在TM0和HE1模式。然而,对于纳米线结构,TM0和HE1模式都没有截止半径。相比之下,纳米尺寸的银孔结构存在一个截止半径,甚至有几个特征半径系数a/lambda, - 0.32, 0.73。对于每个部分,电磁波可能具有不同的特征,例如:当a/lambda <0.73时,沿孔径界面呈全有界特征;当0.32 < a/lambda <0.73时,芯内振荡或沿z方向强衰减。金属孔径的HE1模式不存在截止半径,但沿z方向的波数随半径系数a/lambda单调增加,而纳米线的特征半径系数a/lambda为0.41
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