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Spatially resolved phase-response calibration of liquid-crystal-based spatial light modulators

机译:基于液晶的空间光调制器的空间分辨相位响应校准

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摘要

Methods for measuring and compensating the nonlinear electro-optical effect of transmissive, parallel-aligned liquid crystal (LC)-based spatial light modulators (SLMs) are presented. Particularly, the analysis is focused on the spatial nonuniformity of the voltage versus phase modulation characteristics for an active-matrix-driven, electrically controlled birefringence type LC-SLM. A high-quality reconstruction from phase-only modulating SLMs requires a well-calibrated phase addressing across the entire SLM panel. I discuss how the commonly inherent phase-response inhomogeneity of LC-SLM is characterized by purposeful localized measurement techniques. This phase-response inhomogeneity is efficiently compensated by utilizing a Legendre polynomial representation in combination with a remapping of an 8 bit gray level addressing. The calibration procedure is corroborated by measurement data. The LC-SLM's experimental demonstration finally verifies the resultant improvement in holographic imaging.
机译:提出了测量和补偿基于透射,平行取向液晶(LC)的空间光调制器(SLM)的非线性电光效应的方法。特别地,分析集中于有源矩阵驱动的电控双折射型LC-SLM的电压相对于相位调制特性的空间不均匀性。从仅相位调制SLM进行的高质量重构需要在整个SLM面板上进行良好校准的相位寻址。我讨论了有目的的局部测量技术如何表征LC-SLM通常固有的相位响应不均匀性。通过利用勒让德多项式表示与8位灰度级寻址的重新映射相结合,可以有效地补偿这种相位响应不均匀性。测量数据证实了校准过程。 LC-SLM的实验演示最终验证了全息成像的最终改进。

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