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Nonlinear signal-processing model for scalar diffraction in optical recording

机译:光学记录中标量衍射的非线性信号处理模型

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摘要

A nonlinear signal-processing model is derived for the optical recording channel based on scalar diffraction theory. In this model, the signal waveform is written in closed form as an explicit function of the channel bits that are stored on an optical disk, thereby comprising both linear and nonlinear terms. Its explicit dependence on the channel bits makes this model well suited for signal-processing purposes. With the model it is also convenient to assess the importance of nonlinear contributions to the signal waveform. The model is applied for one-dimensional optical storage as well as for two-dimensional (2D) optical storage in which bits are arranged on a 2D hexagonal lattice. Signal folding is addressed as a typical nonlinear issue in 2D optical storage and can be eliminated by recording of pit marks of sizes considerably smaller than the size of the hexagonal bit cell. Further simplifications of the model with only a limited number of channel parameters are also derived.
机译:基于标量衍射理论,推导了光记录通道的非线性信号处理模型。在此模型中,信号波形以封闭形式写入,作为存储在光盘上的通道位的明确函数,因此既包含线性项又包含非线性项。它对通道位的明确依赖使该模型非常适合于信号处理目的。使用该模型,还可以方便地评估非线性对信号波形的影响。该模型适用于一维光存储以及二维(2D)光存储,其中位排列在2D六角形晶格上。信号折叠被视为二维光学存储中的典型非线性问题,可以通过记录尺寸大大小于六边形位单元尺寸的凹痕来消除。还导出了仅具有有限数量的信道参数的模型的进一步简化。

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  • 来源
    《Applied optics》 |2003年第32期|共11页
  • 作者

    Wim M. J. Coene;

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  • 正文语种 eng
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