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首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers, Brief Communications & Review Papers >Liquid Crystal Lens for Compensation of Spherical Aberration in Multilayer Optical Data Storage
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Liquid Crystal Lens for Compensation of Spherical Aberration in Multilayer Optical Data Storage

机译:补偿多层光学数据存储中球差的液晶透镜

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摘要

In multilayer recording, it is strongly required to compensate the spherical aberration caused by a difference in substrate thickness. A novel liquid crystal (LC) lens is designed and fabricated to compensate the spherical aberration in this study. The new structure of the LC lens includes both concave and convex surfaces, which can compensate the spherical aberration with a relatively long range. Since a previously developed LC panel showed a very low tolerance to the shift of an objective lens, a new component has been proposed with a special LC lens structure to improve both the tolerance and compensation range. By optimized curvature control with a spherical LC lens, the aberration of a Blu-ray optical pickup can be maintained at 0.018薩(rms) even for a thickness variation of ±25 μm. Finally, the LC lens has been fabricated using a standard one drop filling (ODF) process and evaluated by measuring the variation in focal length as a function of applied voltage.
机译:在多层记录中,强烈需要补偿由基板厚度的差异引起的球差。本研究设计并制造了一种新型的液晶(LC)透镜来补偿球差。 LC镜头的新结构同时具有凹面和凸面,可以在相对较长的范围内补偿球差。由于先前开发的LC面板显示出对物镜偏移的公差非常低,因此提出了一种具有特殊LC透镜结构的新组件,以改善公差和补偿范围。通过使用球面LC透镜进行优化的曲率控制,即使厚度变化为±25μm,蓝光光学头的像差也可以保持在0.018萨(rms)。最后,已经使用标准的一滴填充(ODF)工艺制造了LC透镜,并通过测量焦距随施加电压的变化进行了评估。

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