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Advanced iterative algorithm for phase calibration of spatial light modulators integrated in optical instrumentation in a vibration environment

机译:振动环境中光学仪表集成的空间光调制器相位校准的先进迭代算法

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We present a method to obtain the phase modulation characteristic curve of a spatial light modulator (SLM) under severe vibration conditions. The procedure is based on the well-known advanced iterative algorithm (AIA), which allows wavefront extraction from unknown phase-shifted interferograms. Generally, AIA is used to determine the wavefront and the determined phase shifts are of little interest. In contrast, in our method, the main goal of using AIA is to determine the unknown phase shifts induced by an SLM during the calibration procedure. Using a segmented approach to calibration, AIA enables successful calibration even in the presence of additional random phase shifts due to environmental changes. This method has the potential to calibrate SLMs integrated in complex optical instruments with little to no modifications to the optical setup, no matter the environmental conditions. We demonstrate our technique by calibrating an SLM under vacuum conditions (10(-5) mbar) in a common-path configuration compatible with usage of an SLM as a wavefront modulator at the pupil plane of an instrument. Our technique compensates for the vibrations produced by the vacuum pumps and reduces an order of magnitude the root-mean-squared error of the calibration curve evaluated with vibration errors. Our technique enhances the potential use of SLMs in complex optical systems, including aerospace optical instrumentation. (C) 2020 Optical Society of America
机译:我们提出了一种在严重振动条件下获得空间光调制器(SLM)的相位调制特性曲线的方法。该过程基于众所周知的高级迭代算法(AIA),其允许来自未知相移干扰图的波前提取。通常,AIA用于确定波前,并且所确定的相移几乎没有兴趣。相比之下,在我们的方法中,使用AIA的主要目标是在校准过程中确定由SLM引起的未知相移。使用分段方法来校准,即使在存在由于环境变化的额外随机相移,AIA也能够成功校准。这种方法有可能校准集成在复杂的光学仪器中的SLM,无论环境条件如何,都没有对光学设定的修改。我们通过在公共路径配置中校准在真空条件下(10(-5)毫巴)在符合SLM作为仪器的瞳孔平面的波前调制器的公共路径配置中校准SLM来展示我们的技术。我们的技术补偿了真空泵产生的振动,并减少了振动误差评估的校准曲线的根平均平方误差的大小。我们的技术提高了复杂光学系统中的SLMS的潜在使用,包括航空航天光学仪器。 (c)2020美国光学学会

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