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一种用于光盘应用的具有增强馈通抗扰性的新型聚焦/跟踪技术的特性:双像散法

Characterization of a novel focusing/tracking technique with increased feedthrough immunity for optical-disk applications: the double-astigmatic method.

作者信息

Bernacki B E, Bates K, Mansuripur M, Hansen D, Cisneros D

出版信息

Appl Opt. 1993 Oct 10;32(29):5789-96. doi: 10.1364/AO.32.005789.

Abstract

The astigmatic-focusing/push-pull tracking-error detection method is an elegant and sensitive optical servo technique. Unfortunately the formation of error signals far from either line focus of the astigmat (for relaxing alignment tolerances and broadening the servo's acquisition range) gives rise to undesired diffraction effects in the focus servo channel owing to track crossings of the pregrooved disk by the optical stylus, especially if certain aberrations are present. These undesired effects are given several names: pattern noise, optical servo cross talk, and feedthrough. By combining two astigmatic lenses and their associated detectors, one can configure a differential variant of the astigmatic technique. This double-astigmatic method greatly reduces pattern noise caused by the presence of spurious astigmatism oriented with its line foci at ±45° to the disk tracks. In this paper we present numerical modeling and experimental data that demonstrate the effectiveness of this focusing/tracking technique in feedthrough suppression.

摘要

像散聚焦/推挽跟踪误差检测方法是一种精巧且灵敏的光学伺服技术。不幸的是,为了放宽对准公差并拓宽伺服的捕获范围,在远离像散的任何一个线聚焦处形成误差信号,会由于光学唱针与预刻槽盘的轨道交叉而在聚焦伺服通道中产生不期望的衍射效应,尤其是在存在某些像差的情况下。这些不期望的效应有几个名称:图案噪声、光学伺服串扰和馈通。通过组合两个像散透镜及其相关探测器,可以配置像散技术的差分变体。这种双像散方法极大地降低了由与盘轨道的线聚焦成±45°取向的杂散像散的存在所引起的图案噪声。在本文中,我们展示了数值建模和实验数据,这些数据证明了这种聚焦/跟踪技术在抑制馈通方面的有效性。

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