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Aberration Production Using a High-Resolution Liquid-Crystal Spatial Light Modulator

机译:使用高分辨率液晶空间光调制器的像差产生

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Phase-only liquid-crystal spatial light modulators can provide a powerful means of wavefront control. With high resolution and diffractive (modulo 2π) operation, they can accurately represent phase maps with a large dynamic range. Because of this, they are an excellent means of producing electrically controllable, dynamic, and repeatable aberrations. However, proper calibration is critical in achieving accurate phase maps. Consequently, several calibration methods from previous literature were considered. With simplicity and accuracy in mind, we selected one method for each type of necessary calibration and augmented one of the methods with a new step. Then using our preferred calibration methods, we evaluated the performance of the spatial light modulator in the laboratory. We studied various phase maps using interferometry and atmospheric aberrations using a Shack-Hartmann wavefront sensor. All of these measurements show good agreement with theoretical expectations.
机译:纯相位液晶空间光调制器可以提供强大的波前控制手段。通过高分辨率和衍射(模2π)操作,它们可以准确地表示具有大动态范围的相位图。因此,它们是产生电可控,动态和可重复像差的极佳手段。但是,正确的校准对于获得准确的相位图至关重要。因此,考虑了以前文献中的几种校准方法。考虑到简单性和准确性,我们为每种类型的必要校准选择了一种方法,并在其中增加了新的步骤。然后,使用我们首选的校准方法,我们在实验室中评估了空间光调制器的性能。我们使用干涉测量法研究了各种相位图,并使用Shack-Hartmann波前传感器研究了大气像差。所有这些测量结果均显示出与理论预期的良好一致性。

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