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首页> 外文期刊>Applied optics >Analytic performance analysis based on material properties for electroabsorptive asymmetric Fabry-Perot reflection modulators
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Analytic performance analysis based on material properties for electroabsorptive asymmetric Fabry-Perot reflection modulators

机译:基于材料特性的电吸收非对称法布里-珀罗反射调制器的分析性能分析

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摘要

Simple and accurate analytic expressions are provided for the maximum reflectivity and tolerances of an impedance-matched asymmetric Fabry-Perot used as a high-contrast spatial light modulator when electroabsorptive quantum wells provide loss modulation. When the device geometry is optimized, these expressions depend only on material properties, The maximum reflectivity depends only on the fractional absorption change and is independent of the front-mirror reflectivity, The most important tolerance is on the flatness of crystal growth; the fractional-length tolerance is proportional to the absorption coefficient, These formulas agree with experimentally reported results from multiple-quantum-well modulators and previous numerical analyses they are useful for quickly predicting optimized performance of possible now materials. The normally on and normally off geometries are compared. The effect of finite back-mirror reflectivity is clarified. Deviations from impedance match enable increased reflectance difference at the expense of contrast ratio, an approach which is evaluated as a function of material parameters. (C) 2002 Optical Society of America. [References: 20]
机译:当电吸收量子阱提供损耗调制时,将提供简单,准确的解析表达式,以获取用作高对比度空间光调制器的阻抗匹配的不对称Fabry-Perot的最大反射率和公差。优化器件的几何形状时,这些表达式仅取决于材料特性;最大反射率仅取决于吸收率的部分变化,并且与前镜反射率无关;最重要的容差取决于晶体生长的平坦度;这些公式的长度与吸收系数成正比。这些公式与多量子阱调制器的实验报告结果以及先前的数值分析相吻合,它们可用于快速预测可能的现有材料的优化性能。比较常开和常闭的几何形状。阐明了有限的后视镜反射率的影响。与阻抗匹配的偏差使得以对比度为代价增加了反射率差异,该方法根据材料参数进行评估。 (C)2002年美国眼镜学会。 [参考:20]

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