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Characterization and optimization of liquid crystal displays for data storage applications

机译:数据存储应用液晶显示器的表征和优化

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We present the characterization and the optimization of the phase and amplitude modulation of a liquid crystal display (LCD) applied to holographic data storage. We discuss the main LCD modulation regimes demanded in the literature in the application to holographic memories: binary amplitude, binary phase and hybrid ternary modulation (HTM). We show how to obtain optimally these modulation regimes with a LCD. In our strategy it is essential the accuracy demonstrated by the model we use to describe the modulation properties of the LCD. This accuracy allows for a reliable computer search of the configurations enabling for an optimum LCD complex amplitude modulation. Results are given for the calibration of a commercial LCD. Optimum configurations close to the ideal for each of the modulation regimes are also obtained and the values of the various parameters characterizing the quality of these configurations are provided. We have also analyzed the performance of these configurations to perform the Fourier transform (FT) of a binary data page. We see that the optimum configurations obtained for the binary phase and the HTM regimes produce a homogeneous distribution of the energy in the Fourier plane with no DC peak.
机译:我们介绍了应用于全息数据存储的液晶显示器(LCD)的相位和幅度调制的表征和优化。我们讨论在申请到全息记忆的文献中所需的主液晶显示器调制制度:二进制幅度,二进制相和混合三元调制(HTM)。我们展示了如何使用LCD获得最佳的这些调制制度。在我们的策略中,我们用于描述LCD的调制属性的模型所证明的准确性是必要的。这种精度允许可靠的计算机搜索配置,从而实现最佳LCD复幅调制。给出了商业LCD的校准。还获得了接近对每个调制方案的理想的最佳配置,并且提供了表征这些配置的质量的各种参数的值。我们还分析了这些配置的性能来执行二进制数据页的傅里叶变换(FT)。我们看到,对于二进制相和HTM制度获得的最佳配置在没有DC峰值的傅立叶平面中产生能量的均匀分布。

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