Oblique incidence of light propagation in magnetic anisotropic media and digital photonic device applications

C. Su, Sheng-Chi Chang
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引用次数: 0

Abstract

To understand the propagation of optical waves in semiconductor layered media has become important in modern photonics technology, especially for transparent materials because world's industrial investment in optoelectronics is dramatically increased in the recent five years. Layered media include isotropic and anisotropic materials in which transmission and reflection of optical waves are confined by detail structural properties [1]. Thus, the optical tools related structure-sensitive magnetic properties, i.e. magneto-photonics, become useful for interface or surface analysis in the ranges of transparency of the contacting media. Magnetic anisotropy investigation is essential for the growth of magnetic thin films. Recently, hot topic in perpendicular magnetic recording is still in developing because application in high-density recording is indispensable in our future lives.
光在磁各向异性介质中的斜入射传播及数字光子器件的应用
由于近五年来世界各国在光电子方面的工业投资急剧增加,了解光波在半导体层状介质中的传播已成为现代光子学技术,特别是透明材料的重要研究方向。层状介质包括各向同性和各向异性材料,其中光波的传输和反射受到详细结构特性的限制[1]。因此,与结构敏感磁性相关的光学工具,即磁光子学,在接触介质的透明度范围内对界面或表面分析非常有用。磁各向异性的研究对磁薄膜的生长至关重要。垂直磁记录是当前研究的热点,高密度磁记录的应用在未来的生活中是不可缺少的。
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