IEICE Electronics Express
Online ISSN : 1349-2543
ISSN-L : 1349-2543

This article has now been updated. Please use the final version.

The Distribution of Electromagnetic Waves and Forces in a Dispersive Chiral Cylinder
Guiping LiMaoyan WangHailong LiMengxia YuXiaochuan ZhangZhitao XuJun Xu
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JOURNAL FREE ACCESS Advance online publication

Article ID: 13.20160974

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Abstract

By introducing the effects of bound electric and magnetic charges, the mechanical interaction between waves and a chiral cylinder is investigated with the auxiliary differential equations finite-difference time-domain method. The trapping Lorentz force density distributions of an active chiral cylinder, as well as a core-shell cylinder consisting of a chiral shell and a dielectric core illuminated by a normally incident plane wave are simulated. Numerical results show that the working principle is based on gradient forces generated by the continuously coupled cross-polarized waves. This finding may provide a promising avenue in chirality detection and sorting chiral particles from achiral ones.

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© 2016 by The Institute of Electronics, Information and Communication Engineers
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