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Differential wax-wane focus servo technique applied to optical recording systems.

机译:差分蜡湾聚焦伺服技术应用于光学记录系统。

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摘要

This dissertation investigates a new focus error detection technique, i.e., differential wax-wane focus servo, for use in optical recording systems. A combination of scalar diffraction modeling and experiment is used to quantify its performance. A brief review of optical recording is given. The performance of an optical drive is linked directly to its servo system. Performance parameters of focus error signals are discussed. A few popular focus and tracking error detection techniques are summarized. We concentrate on the differential wax-wane focus error detection technique. In order to accurately predict its performance, a scalar diffraction model is employed. Diffraction modeling results, such as detector alignment tolerance and effect of aberrations, are presented. Comparisons to the astigmatic and pupil obscuration focus error detection technique are also given. The gain of the differential wax-wane technique is two times that of single wax-wane. The lock-on range is about three times that of most other techniques in the configuration we studied. Without any aberration, it has 0.04 μm of tracking crosstalk amplitude compared to about 0.25 μm in other techniques. Even if aberrations are present, the crosstalk can be eliminated by adjusting the detector and changing the electronic gain of the individual channels. The overall performance of the differential wax-wane technique is better than the other techniques. The design and alignment of an optical head are summarized. The optical head is used to test the modeling results. One factor that affects optical drives significantly is aberration. A phase-shifting interferometer is used to measure the wavefront of our optical head. The measured wavefront is implemented in our diffraction model, and an excellent agreement between experimental and modeling results is achieved. We also present preliminary studies of a multiple beam optical head. A model that combines ray trace and diffraction propagation is used to analyze the focused beam on the disk. The focus-error signal of off-axis beams are discussed. The effects of disk tilt are also given. By using a two-dimensional array, the number of channels available can be increased with the same optics. Possible disk formats and a tracking scheme for multi-beam optical recording using a two-dimensional array are also discussed.
机译:本文研究了一种新的聚焦误差检测技术,即用于光学记录系统的差分蜡湾聚焦伺服。标量衍射建模和实验相结合,用于量化其性能。简要回顾了光学记录。光盘驱动器的性能直接与其伺服系统有关。讨论了聚焦误差信号的性能参数。总结了一些流行的焦点和跟踪错误检测技术。我们专注于差分蜡波聚焦误差检测技术。为了准确地预测其性能,采用了标量衍射模型。给出了衍射建模结果,例如检测器对准公差和像差效应。还给出了散光和瞳孔模糊焦点误差检测技术的比较。差分蜡块技术的增益是单蜡块的两倍。在我们研究的配置中,锁定范围约为大多数其他技术的三倍。在没有任何像差的情况下,它具有0.04μm的跟踪串扰幅度,而其他技术中只有0.25μm。即使存在像差,也可以通过调整检测器并更改各个通道的电子增益来消除串扰。差动蜡-技术的整体性能优于其他技术。总结了光学头的设计和对准。光学头用于测试建模结果。严重影响光驱的因素之一是像差。相移干涉仪用于测量我们的光学头的波前。在我们的衍射模型中实现了测量的波前,并且在实验结果和建模结果之间取得了极好的一致性。我们还介绍了多光束光学头的初步研究。结合了光线跟踪和衍射传播的模型用于分析磁盘上的聚焦光束。讨论了离轴光束的聚焦误差信号。还给出了磁盘倾斜的影响。通过使用二维阵列,可用相同的光学元件增加可用通道的数量。还讨论了可能的磁盘格式和使用二维阵列进行多光束光学记录的跟踪方案。

著录项

  • 作者

    Wang Mark Shi.;

  • 作者单位
  • 年度 1993
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  • 原文格式 PDF
  • 正文语种 en
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