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等离子体薄膜上的二维逆切伦科夫辐射

Two-dimensional reversed Cherenkov radiation on plasmonic thin-film.

作者信息

Liu Weihao, Liang Linbo, Jia Qika

出版信息

Opt Express. 2017 Jul 24;25(15):18216-18229. doi: 10.1364/OE.25.018216.

Abstract

The reversed Cherenkov radiation is one of the most attractive research topics because of its unique characteristics and promising applications. It was generally believed that reversed Cherenkov radiations exist only in left-handed metamaterials (double negative mediums). In the present paper, we demonstrated that they can also be generated on plasmonic thin-films. Reversed Cherenkov radiations in the terahertz region and in the visible light region were achieved on the metamaterial thin-film and the metal thin-film, respectively. Their radiation frequencies and directions, which are interdependent with each other, are controllable. For the normal Cherenkov radiation, the wavelength on the thin-film increases with the frequency; whereas for the reversed Cherenkov radiation, the opposite is true. Theoretical analyses and simulations revealed that the normal or reversed Cherenkov radiation is generated depending on whether the forward or backward surface modes are excited on the plasmonic thin-film. Requirements of these reversed Cherenkov radiations were found out.

摘要

逆切伦科夫辐射因其独特的特性和广阔的应用前景而成为最具吸引力的研究课题之一。人们普遍认为,逆切伦科夫辐射仅存在于左手超材料(双负介质)中。在本文中,我们证明了它们也可以在等离子体薄膜上产生。分别在超材料薄膜和金属薄膜上实现了太赫兹波段和可见光波段的逆切伦科夫辐射。它们相互依赖的辐射频率和方向是可控的。对于正常切伦科夫辐射,薄膜上的波长随频率增加;而对于逆切伦科夫辐射,情况则相反。理论分析和模拟表明,正常或逆切伦科夫辐射的产生取决于等离子体薄膜上向前或向后的表面模式是否被激发。我们还找出了这些逆切伦科夫辐射的条件。

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