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Hollow Gaussian beam generated by beam shaping with phase-only liquid crystal spatial light modulator

机译:通过仅相位液晶空间光调制器进行光束整形产生的空心高斯光束

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摘要

Based on the refractive beam shaping system, the transformation of a quasi-Gaussian beam into a dark hollow Gaussian beam by a phase-only liquid crystal spatial light modulator (LC-SLM) is proposed. According to the energy conservation and constant optical path principle, the phase distribution of the aspheric lens and the phase-only LC-SLM can modulate the wave-front properly to generate the hollow beam. The numerical simulation results indicate that, the dark hollow intensity distribution of the output shaped beam can be maintained well for a certain propagation distance during which the dark region will not decrease whereas the ideal hollow Gaussian beam will do. By designing the phase modulation profile, which loaded into the LC-SLM carefully, the experimental results indicate that the dark hollow intensity distribution of the output shaped beam can be maintained well even at a distance much more than 550 mm from the LC-SLM, which agree with the numerical simulation results.
机译:基于折射光束整形系统,提出了仅相位液晶空间光调制器(LC-SLM)将准高斯光束转换为暗空心高斯光束的方法。根据节能和恒定光路原理,非球面透镜和仅相位LC-SLM的相位分布可以适当地调制波前,以产生空心光束。数值模拟结果表明,在一定的传播距离内​​,输出形光束的暗空心强度分布可以很好地保持,在此期间,暗区不会减少,而理想的空心高斯光束会做到。通过精心设计相位调制曲线,将其小心地加载到LC-SLM中,实验结果表明,即使与LC-SLM的距离大于550 mm,也可以很好地保持输出成形光束的暗中空强度分布,与数值模拟结果吻合。

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