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通用光盘多色动态测试平台

Versatile polychromatic dynamic testbed for optical disks.

作者信息

Mansuripur M, Peng C, Erwin J K, Bletscher W, Kim S G, Lee S K, Gerber R E, Bartlett C, Goodman T D, Cheng L, Chung C S, Kim T, Bates K

出版信息

Appl Opt. 1997 Dec 10;36(35):9296-303. doi: 10.1364/ao.36.009296.

Abstract

A dynamic testbed for the evaluation of optical disks has been designed and constructed. The system is achromatic within the wavelength range 440-690 nm, allowing any light source in this range to be utilized for read-write-erase experiments. In addition, the system accepts disks with substrate thicknesses ranging from 0 to 1.7 mm. The polarization handling capabilities of the testbed are such that, with the turn of a knob, one can generate either linearly polarized or circularly polarized light at the disk surface. This feature permits the testing of both magneto-optical and phase-change disks, in addition to compact disks and digital versatile disks, without any modifications to the system. A leaky polarizing beam splitter (LPBS) has been specially designed and built for this tester. The LPBS allows continuous adjustment of the ratio between p- and s-polarized components of the reflected beam that reach the detectors. This feature is especially useful for magneto-optical disks, where one can achieve an optimum signal-to-noise ratio by adjusting the relative amounts of the two components of polarization at the detection module. Focus-error detection is based on the astigmatic method, and the primary track-error detection scheme is the push-pull method, although other focusing and tracking schemes may also be implemented. The rf data signal and the focusing and tracking servo signals are all derived from the same detectors, thus allowing the optical power returning from the disk to be used in its entirety for these multiple purposes. The detection channel consists of two high-speed quad detectors mounted on the two arms of a differential detection module. By combining the various outputs of these detectors it is possible to generate the astigmatic focus-error signal, the push-pull track-error signal, the differential magneto-optical readout signal, the conventional sum signal for phase-change disk readout, and the differential edge-signal for mark-edge detection on various types of optical media.

摘要

已设计并构建了一个用于评估光盘的动态测试平台。该系统在440 - 690纳米波长范围内是消色差的,允许此范围内的任何光源用于读写擦除实验。此外,该系统可接受基板厚度在0至1.7毫米之间的光盘。测试平台的偏振处理能力使得通过转动一个旋钮,就能在光盘表面产生线偏振光或圆偏振光。这一特性允许对磁光盘、相变光盘以及光盘和数字多功能光盘进行测试,而无需对系统进行任何修改。为此测试仪专门设计并制造了一个泄漏偏振分束器(LPBS)。LPBS可连续调节到达探测器的反射光束中p偏振和s偏振分量之间的比例。这一特性对于磁光盘尤为有用,在磁光盘中,通过在检测模块处调节两种偏振分量的相对量,可以实现最佳的信噪比。聚焦误差检测基于像散法,主要的轨道误差检测方案是推挽法,不过也可以实现其他聚焦和跟踪方案。射频数据信号以及聚焦和跟踪伺服信号均来自同一探测器,从而使得从光盘返回的光功率能够全部用于这些多种用途。检测通道由安装在差分检测模块两个臂上的两个高速四象限探测器组成。通过组合这些探测器的各种输出,可以生成像散聚焦误差信号、推挽轨道误差信号、差分磁光读出信号、用于相变光盘读出的传统和信号以及用于各种类型光学介质上标记边缘检测的差分边缘信号。

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