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阿基米德螺旋槽诱导的表面等离子体手性研究。

Study of surface plasmon chirality induced by Archimedes' spiral grooves.

作者信息

Ohno Tomoki, Miyanishi Shintaro

出版信息

Opt Express. 2006 Jun 26;14(13):6285-90. doi: 10.1364/oe.14.006285.

Abstract

A chirality of surface plasmons excited on a silver film with Archimedes' spiral grooves during incidence of a circularly polarized light is analytically and numerically studied by using the finite-difference time-domain (FDTD) modeling method. We found that the surface of a plasmon has selective chirality, which is given by the sum of the chiralities of the incident light and the spiral structure. The surface plasmons with the chirality lead to zero-order, first-order, and high-order evanescent Bessel beams with electric charge distributions on the film. This selectivity could be widely applied for chiral detection of the incident light and chiral excitation of several optical modes in nanophotonics.

摘要

利用时域有限差分(FDTD)建模方法,对圆偏振光入射到具有阿基米德螺旋凹槽的银膜上时激发的表面等离激元的手性进行了理论分析和数值研究。我们发现,等离激元表面具有选择性手性,它由入射光和螺旋结构的手性之和给出。具有这种手性的表面等离激元会在膜上产生电荷分布的零阶、一阶和高阶倏逝贝塞尔光束。这种选择性可广泛应用于入射光的手性检测以及纳米光子学中多种光学模式的手性激发。

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