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首页> 外文期刊>Journal of optics >Radial-shearing interferometry for phase LC-SLM calibration with a pair of conjugated vortex beams
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Radial-shearing interferometry for phase LC-SLM calibration with a pair of conjugated vortex beams

机译:用于相位LC-SLM校准的径向剪切干涉测量与一对共轭涡流梁校准

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摘要

Spatial light modulators are widely used in various fields such as light field control and beam shaping. It is necessary to calibrate the modulation curve of phase spatial light modulator (SLM) accurately so as to load the pattern correctly. Different from the calibration methods with interference fringes, a group of dynamic petal-like spots with different rotation angles can also be applied to calibrate the modulation curve. The number of petals is generated by a pair of conjugated vortex beams and increases as the increase of vortex topological charge. The calibration accuracy was then greatly improved by weighted algorithm based on the multiple rotated petals. The effectiveness of the proposed SLM calibration method was verified in experiments by four dynamic petals. Compared with the traditional fringe pattern calibration, this method has merit of simple structure, convenient operation and high precision.
机译:空间光调制器广泛用于各种领域,例如光场控制和光束整形。 有必要精确地校准相空间光调制器(SLM)的调制曲线,以便正确加载图案。 与具有干涉条纹的校准方法不同,也可以应用一组具有不同旋转角度的动态花瓣状斑点来校准调制曲线。 花瓣的数量由一对共轭涡流束产生,随着涡流拓扑电荷的增加而增加。 然后通过基于多旋转花瓣的加权算法大大提高了校准精度。 通过四个动态花瓣在实验中验证了所提出的SLM校准方法的有效性。 与传统的条纹图案校准相比,这种方法具有简单的结构,操作方便,精度高。

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