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基于液晶元件的蓝光拾取头系统光学设计研究

Study of optical design of Blu-ray pickup head system with a liquid crystal element.

作者信息

Fang Yi-Chin, Yen Chih-Ta, Hsu Jui-Hsin

出版信息

Appl Opt. 2014 Oct 10;53(29):H153-9. doi: 10.1364/AO.53.00H153.

Abstract

This paper proposes a newly developed optical design and an active compensation method for a Blu-ray pickup head system with a liquid crystal (LC) element. Different from traditional pickup lens design, this new optical design delivers performance as good as the conventional one but has more room for tolerance control, which plays a role in antishaking devices, such as portable Blu-ray players. A hole-pattern electrode and LC optics with external voltage input were employed to generate a symmetric nonuniform electrical field in the LC layer that directs LC molecules into the appropriate gradient refractive index distribution, resulting in the convergence or divergence of specific light beams. LC optics deliver fast and, most importantly, active compensation through optical design when errors occur. Simulations and tolerance analysis were conducted using Code V software, including various tolerance analyses, such as defocus, tilt, and decenter, and their related compensations. Two distinct Blu-ray pickup head system designs were examined in this study. In traditional Blu-ray pickup head system designs, the aperture stop is always set on objective lenses. In the study, the aperture stop is on the LC lens as a newly developed lens. The results revealed that an optical design with aperture stop set on the LC lens as an active compensation device successfully eliminated up to 57% of coma aberration compared with traditional optical designs so that this pickup head lens design will have more space for tolerance control.

摘要

本文提出了一种新开发的用于带有液晶(LC)元件的蓝光拾取头系统的光学设计和有源补偿方法。与传统的拾取透镜设计不同,这种新的光学设计具有与传统设计一样好的性能,但在公差控制方面有更大的空间,这在诸如便携式蓝光播放器等防抖设备中发挥作用。采用带外部电压输入的孔图案电极和液晶光学器件在液晶层中产生对称的非均匀电场,该电场将液晶分子引导成适当的梯度折射率分布,从而导致特定光束的会聚或发散。当出现误差时,液晶光学器件通过光学设计提供快速且最重要的是有源补偿。使用Code V软件进行了模拟和公差分析,包括各种公差分析,如散焦、倾斜和偏心及其相关补偿。本研究考察了两种不同的蓝光拾取头系统设计。在传统的蓝光拾取头系统设计中,孔径光阑总是设置在物镜上。在本研究中,孔径光阑设置在作为新开发透镜的液晶透镜上。结果表明,与传统光学设计相比,将孔径光阑设置在液晶透镜上作为有源补偿装置的光学设计成功消除了高达57%的彗差,因此这种拾取头透镜设计在公差控制方面将有更多空间。

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