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Suppression of the zero-order diffracted beam from a pixelated spatial light modulator by phase compression

机译:通过相位压缩抑制来自像素化空间光调制器的零级衍射光束

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摘要

Phase compression is used to suppress the on-axis zero-order diffracted (ZOD) beam from a pixelated phase-only spatial light modulator (SLM) by a simple modification to the computer generated hologram (CGH) loaded onto the SLM. After CGH design, the phase of each SLM element is identically compressed by multiplying by a constant scale factor and rotated on the complex unit-circle to produce a cancellation beam that destructively interferes with the ZOD beam. Experiments achieved a factor of 3 reduction of the ZOD beam using two different liquid-crystal SLMs. Numerical simulation analyzed the reconstructed image quality and diffraction efficiency versus degree of phase compression and showed that phase compression resulted in little image degradation or power loss.
机译:通过对加载到SLM上的计算机生成的全息图(CGH)进行简单修改,可以使用相位压缩来抑制来自像素化的仅相位空间光调制器(SLM)的轴上零阶衍射(ZOD)光束。在CGH设计之后,每个SLM元素的相位通过乘以恒定比例因子而被相同地压缩,并在复数单位圆上旋转,以产生相消干涉ZOD光束的抵消光束。实验使用两种不同的液晶SLM实现了ZOD光束减小3倍。数值模拟分析了重建的图像质量和衍射效率与相位压缩程度之间的关系,结果表明,相位压缩几乎不会降低图像质量或降低功率损耗。

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