Macfaden A J, Wilkinson T D
J Opt Soc Am A Opt Image Sci Vis. 2017 Feb 1;34(2):161-170. doi: 10.1364/JOSAA.34.000161.
Arbitrary two-dimensional complex modulation of an optical field is a powerful tool for coherent optical systems. No single spatial light modulator (SLM) offers true arbitrary complex modulation, but they can be combined in order to achieve this. In this work, two sides of a twisted nematic (TN) liquid crystal SLM are used sequentially to implement different arbitrary modulation schemes. In order to fully explore and exploit the rich modulation behavior offered by a TN device, a generalized Jones matrix approach is used. A method for in situ characterization of the SLM inside the two-pass system is demonstrated, where each side of the SLM is independently characterized. This characterization data is then used to design appropriate polarizer configurations to implement arbitrary complex modulation schemes (albeit without 100% efficiency). Finally, an in situ optimization technique that corrects states by applying a translation in the complex plane is demonstrated. This technique can correct both for variations across the SLM and bulk changes in the SLM behavior due to the changing temperature.
对光场进行任意二维复调制是相干光学系统的一种强大工具。没有单个空间光调制器(SLM)能提供真正的任意复调制,但可以将它们组合起来以实现这一点。在这项工作中,扭曲向列(TN)液晶空间光调制器的两侧被依次使用,以实现不同的任意调制方案。为了充分探索和利用TN器件所提供的丰富调制行为,采用了广义琼斯矩阵方法。展示了一种在双程系统中对空间光调制器进行原位表征的方法,其中空间光调制器的每一侧都被独立表征。然后,这些表征数据被用于设计合适的偏振器配置,以实现任意复调制方案(尽管效率并非100%)。最后,展示了一种通过在复平面中应用平移来校正状态的原位优化技术。该技术既可以校正空间光调制器上的变化,也可以校正由于温度变化导致的空间光调制器行为的整体变化。