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Intensity, polarization, and phase information in optical disk systems

机译:光盘系统中的强度,偏振和相位信息

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摘要

Digital information in optical data storage systems can be encoded in the intensity, in the polarization state, or in the phase of a carrier laser beam. Intensity modulation is achieved at the surface of the storage medium either through destructive interference from surface-relief features (e.g., CD or DVD pits) or through reflectivity variations (e.g., alteration of optical constants of phase-change media). Magneto-optical materials make use of the polar magneto-optical Kerr effect to produce polarization modulations of the focused beam reflected from the storage medium. Both surface-relief structures and material-property variations can create, at the exit pupil of the objective lens of the optical pickup, a phase modulation (this, in addition to any intensity or polarization modulation or both). Current optical data storage systems do not make use of this phase information, whose recovery could potentially increase the strength of the readout signal. We show how all three mechanisms can be exploited in a scanning optical microscope to reconstruct the recorded (or embedded) data patterns on various types of optical disk. (C) 2002 Optical Society of America. [References: 10]
机译:可以以强度,偏振态或载波激光束的相位对光学数据存储系统中的数字信息进行编码。通过来自表面浮雕特征(例如,CD或DVD凹坑)的破坏性干涉或通过反射率变化(例如,相变介质的光学常数的改变)在存储介质的表面上实现强度调制。磁光材料利用极性磁光Kerr效应对从存储介质反射的聚焦光束产生偏振调制。表面浮雕结构和材料性质的变化都可以在光学拾取器的物镜的出射光瞳处产生相位调制(除了任何强度或偏振调制或二者兼有)。当前的光学数据存储系统没有利用该相位信息,其相位恢复可能会增加读出信号的强度。我们展示了如何在扫描光学显微镜中利用这三种机制来重建各种类型的光盘上的记录(或嵌入)数据模式。 (C)2002年美国眼镜学会。 [参考:10]

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