Magneto-Optic Compensator for MO Disk Substrate Birefringence

J. Revelli, Stuart Perry, D. Stinson
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Abstract

Injection-molding techniques employed in the fabrication of polymer substrates used in magneto-optic disks introduce stress-induced birefringence. This birefringence, which varies from point to point on the disk, results in a low-frequency noise component to the signal available in the detection of magneto-optically stored data. This paper describes a method, based on the use of a variable-angle Faraday rotator, for compensating for the substrate birefringence. It should be pointed out that the following method is predicated on the assumptions that a) vertical birefingence can be ignored, and b) the in-plane birefringence axes are oriented along the disk radial and tangential axes at each point on the disk. Although it is realized that the vertical birefringence component cannot in general be ignored,1 the compensation presently described should improve the signal-to-noise ratio.
MO光盘衬底双折射磁光补偿器
注射成型技术用于制造用于磁光盘的聚合物衬底,引入应力诱导双折射。这种双折射在磁盘上的点与点之间变化,导致磁光存储数据检测中可用的信号具有低频噪声成分。本文介绍了一种利用变角法拉第旋转器补偿衬底双折射的方法。需要指出的是,下面的方法是基于以下假设:a)垂直双折射可以忽略,b)平面内双折射轴在磁盘上每一点沿磁盘径向和切向轴方向。虽然人们意识到垂直双折射分量通常不能被忽略,但目前描述的补偿应该能提高信噪比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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