Prikryl I
Appl Opt. 1992 Apr 10;31(11):1853-62. doi: 10.1364/AO.31.001853.
The performance of a magneto-optic readout system can be degraded by a phase shift between two basic polarization components of a readout beam. One source of this phase shift is undesired birefringence in the substrate of an optical disk. The effect of disk birefringence on the signal-to-noise ratio of a differential magneto-optic readout is evaluated. It is shown that this effect may be represented by two parameters J(2) and J(3) that depend only on the birefringence and the numerical aperture of a beam illuminating the disk. Previous papers on this subject either presented involved, open-form expressions for the differential magneto-optic readout or assumed that the beam illuminating the disk is collimated. Here simple closed-form formulas are derived by using parameters J(2) and J(3). The effects of system conditions that can interact with the disk birefringence, such as an imbalance between the differential data detectors, are also considered.
磁光读出系统的性能可能会因读出光束的两个基本偏振分量之间的相位偏移而降低。这种相位偏移的一个来源是光盘基板中不希望出现的双折射。评估了盘片双折射对差分磁光读出信噪比的影响。结果表明,这种影响可以用仅取决于双折射和照射盘片光束的数值孔径的两个参数J(2)和J(3)来表示。以前关于这个主题的论文要么给出了复杂的、开放式的差分磁光读出表达式,要么假设照射盘片的光束是准直的。这里通过使用参数J(2)和J(3)推导出了简单的闭式公式。还考虑了可能与盘片双折射相互作用的系统条件的影响,例如差分数据探测器之间的不平衡。