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Application of the fractional Fourier transform to the design of LCOS based optical interconnects and fiber switches

机译:分数阶傅里叶变换在基于LCOS的光互连和光纤交换机设计中的应用

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摘要

It is shown that reflective liquid crystal on silicon (LCOS) spatial light modulator (SLM) based interconnects or fiber switches that use defocus to reduce crosstalk can be evaluated and optimized using a fractional Fourier transform if certain optical symmetry conditions are met. Theoretically the maximum allowable linear hologram phase error compared to a Fourier switch is increased by a factor of six before the target crosstalk for telecom applications of -40 dB is exceeded. A Gerchberg-Saxton algorithm incorporating a fractional Fourier transform modified for use with a reflective LCOS SLM is used to optimize multi-casting holograms in a prototype telecom switch. Experiments are in close agreement to predicted performance.
机译:结果表明,如果满足某些光学对称性条件,则可以使用分数傅里叶变换评估和优化基于反射硅基液晶(LCOS)空间光调制器(SLM)的互连或使用散焦以减少串扰的光纤开关。从理论上讲,与傅立叶开关相比,最大允许线性全息图相位误差会在不超过-40 dB的电信应用目标串扰之前增加六倍。结合分数傅立叶变换的Gerchberg-Saxton算法经过修改,可与反射型LCOS SLM一起使用,以优化原型电信交换机中的多播全息图。实验与预测的性能非常吻合。

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