一维磁光子晶体磁光模拟空间光调制器的制备及其基本性质

H. Takagi, K. Takahashi, A. Tsuzuki, P. Lim, H. Uchida, M. Inoue
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引用次数: 1

摘要

本文首次介绍了由一维磁光子晶体(MPCs)组成的模拟磁光空间光调制器(MOSLM)的制备及其基本性质。通过设计介质结构,可以在特定波长的光下获得较大的介质法拉第旋转角,从而大大提高了MOSLM的光学对比度,因此在MOSLM中使用1D-MPCs是非常有用的。在局域光模式下获得了法拉第旋转的大增强(大约5倍大),这表明尽管石榴石膜厚度很薄,但mosm的光学对比度可以得到很大的增强。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Preparation and Fundamental Properties of Magneto-Optic Analog Spatial Light Modulator with One Dimensional MagnetoPhotonic Crystals
This paper, for the first time, presents the preparation and fundamental properties of analog magneto-optic spatial light modulators (MOSLM) which is composed of one-dimensional (1D) magnetophotonic crystals (MPCs). The use of 1D-MPCs in MOSLM is very useful because large Faraday rotation angle of the medium can be obtained at a particular wavelength of light by designing the medium structure, which results in considerable improvement of optical contrast in MOSLM. Large enhancement in Faraday rotation (approximately 5 times large) was obtained for the localized mode of light, suggesting that the optical contrast of MOSLM can be enhanced considerably, although the garnet film thickness was very thin.
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