Transitional grey level driving method for increasing response speed of liquid crystal wave-front corrector
A wavefront corrector and response speed technology, applied in the field of adaptive optics, can solve problems such as slowing down
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[0031] In order to understand the present invention more clearly, the transition gray level driving method will be described in detail below in conjunction with the implementation.
[0032] 1) The laser 1 is a semiconductor laser with a wavelength λ=785nm.
[0033] 2) Collimation The collimating lens 2 and the focusing lens 5 are both doublet lenses with a focal length of 100 mm and an aperture of 25 mm.
[0034] 3) Polarizer 3 is a polymer polarizer with an aperture of 25 mm and an extinction ratio of 500:1.
[0035] 4) The liquid crystal wavefront corrector 4 is a nematic liquid crystal pure phase wavefront corrector made by BNS Company of the United States, with 128×128 pixels, so it is determined that j=1, 2, 3, . . . in the grayscale image ., 128 2 ; Using the usual driving method, the liquid crystal wavefront corrector 4 has a response time of 3ms, an aperture of 6.14mm, a center correction wavelength λ=785nm, and a phase modulation value of 1.2λ. The corresponding re...
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