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Two-deformable-mirror concept for correcting scintillation effects in laser beam projection through the turbulent atmosphere

机译:二次变形镜概念,用于校正通过湍流大气的激光束投影中的闪烁效应

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摘要

A two-deformable-mirror concept for correcting scintillation effects in laser beam projection through the turbulent atmosphere is presented. This system uses a deformable mirror and a Fourier-transforming mirror to adjust the amplitude of the wave front in the telescope pupil, similar to kinoforms used in laser beam shaping. A second deformable mirror is used to correct the phase of the wave front before it leaves the aperture. The phase applied to the deformable mirror used for controlling the beam amplitude is obtained with a technique based on the Fienup phase-retrieval algorithm. Simulations of propagation through a single turbulent layer sufficiently distant from the beacon observation and laser beam transmission aperture to cause scintillation shows that, for an ideal deformable-mirror system, this field-conjugation approach improves the on-axis field amplitude by a factor of approximately 1.4 to 1.5 compared with a conventional phase-only correction system. (C) 1998 Optical Society of America. [References: 22]
机译:提出了一种可变形镜的概念,用于校正通过湍流大气的激光束投影中的闪烁效应。该系统使用可变形反射镜和傅立叶变换反射镜来调节望远镜光瞳中波前的振幅,这与激光束整形中使用的千斤顶相似。第二个可变形反射镜用于在波前离开孔径之前校正波前的相位。施加到用于控制光束幅度的可变形反射镜上的相位是通过基于Fienup相位检索算法的技术获得的。通过单个湍流层的传播仿真结果表明,对于理想的可变形镜面系统,该场共轭方法将轴距场振幅提高了大约两倍,该湍流层距信标观测和激光束传输孔径足够远,从而引起闪烁与传统的仅相位校正系统相比,精度为1.4至1.5。 (C)1998年美国眼镜学会。 [参考:22]

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