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Holographic projection of arbitrary light patterns with a suppressed zero-order beam

机译:零阶光束被抑制的任意光图案的全息投影

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摘要

We present what is to our knowledge a novel technique for efficient suppression of the zero-order beam inherent in light patterns projected via phase-only computer-generated holograms (CGHs). Encoding a CGH on a spatial light modulator (SLM) with a limited fill factor produces a disturbing zero-order beam at the optical axis. Here, we propose to derive a CGH, which includes holographic information to project a corrective beam that destructively interferes with the zero-order beam. The CGH for projecting arbitrary light patterns plus a corrective beam are derived using the Gerchberg-Saxton algorithm where the iterations impose both amplitude and phase constraints for the target field pattern at the Fourier plane. As proof of principle, we analyze the viability of the technique by simulating the performance when applied on a practical SLM with a limited fill factor, fixed number of phase-shifting pixels, and wavefront distortion associated with the surface roughness of the SLM.
机译:我们介绍我们所知的是一种有效抑制通过仅相位计算机生成的全息图(CGH)投射的光图案中固有的零级光束的新颖技术。在具有有限填充因子的空间光调制器(SLM)上对CGH进行编码会在光轴上产生干扰的零阶光束。在这里,我们建议导出一个CGH,其中包括全息信息,以投射出与零级光束相消干涉的校正光束。使用Gerchberg-Saxton算法导出用于投射任意光图案和校正光束的CGH,其中迭代对傅立叶平面上的目标场图案施加幅度和相位约束。作为原理证明,我们通过模拟在有限填充因子,固定数量的相移像素以及与SLM表面粗糙度相关的波前畸变的实际SLM上应用时的性能,来分析该技术的可行性。

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