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Channel model for InSb-based superresolution optical disc system

机译:基于InSb的超分辨率光盘系统的通道模型

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A signal model of a superresolution optical channel would be an efficient tool for developing components of an associated high-density optical disc system. While the behavior of the laser diode, aperture, lens, and detector is properly described, a general mathematical model of the superresolution disc itself is not yet available. However, different approaches have been made to describe the properties of a mask layer, mainly based on temperature- or power-dependent nonlinear effects [1-6]. The main problem of the modeling is that temperature-dependent material properties, such as thermal conductivity and refractive indices, are not known or not accurate enough to allow quantitative predictions. Therefore, it could be useful to define a signal-based or phenomenological model that can be calibrated with experimental data. In this contribution, we developed a complete optical channel model--from non-return-to-zero inverted (NRZI) input to disc readout signal--including the reflectivity of a superresolution disc with InSb used for the mask layer. Model parameters are derived from data measured using a static tester. The model is finally applied to a configuration appropriate for a dynamic superresolution optical drive by moving the focused spot relative to the material.
机译:超分辨率光学通道的信号模型将是开发相关的高密度光盘系统组件的有效工具。虽然正确描述了激光二极管,光圈,透镜和检测器的行为,但超分辨率光盘本身的通用数学模型尚不可用。然而,已经主要基于基于温度或功率的非线性效应[1-6],采用了不同的方法来描述掩模层的特性。建模的主要问题是温度相关的材料属性(例如热导率和折射率)未知或不够精确,无法进行定量预测。因此,定义可以用实验数据校准的基于信号或现象学的模型可能很有用。在这项贡献中,我们开发了一个完整的光通道模型-从非归零反相(NRZI)输入到光盘读出信号-包括具有InSb的超分辨率光盘的反射率,用于掩模层。模型参数来自使用静态测试仪测量的数据。最后,通过相对于材料移动聚焦点,将该模型应用于适用于动态超分辨率光盘驱动器的配置。

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