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基于亚波长纳米狭缝的等离子体波片。

Plasmonic wave plate based on subwavelength nanoslits.

机构信息

School of Engineering and Applied Science, Harvard University, Cambridge, Massachusetts 02138, USA.

出版信息

Opt Lett. 2011 Jul 1;36(13):2498-500. doi: 10.1364/OL.36.002498.

Abstract

We propose a quarter-wave plate based on nanoslits and analyze it using a semianalytical theory and simulations. The device comprises two nanoslits arranged perpendicular to one another where the phases of the fields transmitted by the nanoslits differ by λ/4. In this way, the polarization state of the incident light can be changed from linear to circular or vice versa. The plasmonic nanoslit wave plate is thin and has a subwavelength lateral extent. We show that the predictions for the phase shift obtained from a semianalytical model are in very good agreement with simulations by the finite difference time domain method.

摘要

我们提出了一种基于纳米狭缝的四分之一波片,并使用半解析理论和模拟对其进行了分析。该器件由两个相互垂直排列的纳米狭缝组成,其中纳米狭缝传输的场的相位相差 λ/4。通过这种方式,可以将入射光的偏振状态从线偏振变为圆偏振,或者反之亦然。等离子体纳米狭缝波片很薄,具有亚波长的横向尺寸。我们表明,从半解析模型获得的相移预测与有限差分时域方法的模拟非常吻合。

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