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A direct comparison between a MEMS deformable mirror and a liquid crystal spatial light modulator in signal-based wavefront sensing

机译:基于信号的波前传感中的MEMS变形镜和液晶空间光调制器之间的直接比较

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Aberrations degrade the performance of optical systems in terms of resolution and signal-to-noise ratio. This work explores the feasibility of a signal-based wavefront sensor, which employs a search algorithm to estimate Zernike coefficients of given aberrations. The search algorithm was supported by Gaussian interpolation. The performance of two different reflective wavefront correctors, a deformable mirror and a spatial light modulator in signal-based wavefront sensing, was compared under identical conditions. The aberrations were introduced by using another identical high resolution reflecting spatial light modulator. The performance was quantified using the Strehl ratio, which was estimated from simultaneously acquired Hartmann-Shack measurements of Zernike coefficients. We find that the spatial light modulator can be a good alternative to the deformable mirror in terms of dynamic range and sensitivity, when speed is not a limiting factor. Distinct advantages of the spatial light modulator are high number of pixels and a larger active area.
机译:像差在分辨率和信噪比方面降低了光学系统的性能。这项工作探讨了基于信号的波前传感器的可行性,该传感器采用搜索算法来估计给定像差的Zernike系数。高斯插值支持搜索算法。在相同条件下,比较了两种不同的反射波阵面校正器,可变形反射镜和空间光调制器在基于信号的波阵面传感中的性能。通过使用另一个相同的高分辨率反射空间光调制器来引入像差。使用Strehl比率对性能进行量化,该比率是根据同时获取的Zernike系数的Hartmann-Shack测量值估算的。我们发现,当速度不是限制因素时,就动态范围和灵敏度而言,空间光调制器可以很好地替代可变形反射镜。空间光调制器的显着优势是像素数量大和有效面积大。

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