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Direct Wavefront Sensing for Atmospheric Adaptive Optics in Strong Scintillation

机译:强闪烁中大气自适应光学的直接波前传感

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Conventional adaptive optics (AO) systems using gradient wavefront sensors and linear least-squares reconstruc-tors, perform very poorly when light has propagated through strong atmospheric turbulence. This is due to vortices in the wavefront that cannot be reconstructed using the least-squares method. One solution to the problem is to use non-linear reconstructors, however a second solution is to use direct wavefront sensors that circumvent the reconstruction problem. Direct wavefront sensors are simple self-referencing interferometers that directly measure the phase difference between a reference beam and an aberrated one. In this study the viability of a point-diffraction interferometer for a closed-loop atmospheric AO system was tested. A point-diffraction interferometer was built using a modified Mach-Zehnder set-up. The system was used in closed-loop using a ferroelectric SLM to produce the aberrated wave after correction. The SLM was used to emulate a corrective device that corresponded to a square, 12x12, piston-only segmented mirror with a stroke of ±π. Its performance was tested for the case of atmospheric turbulence aberrations. Both uniform intensity, and scintillated cases were looked at. The investigation showed, through simulation and experiment, that the point-diffraction interferometer worked in closed-loop operation in both uniform intensity and scintillated aberrations. Its robustness in the presence of phase discontinuities makes it a promising option for wavefront sensing in strong scintillation.
机译:当光通过强烈的大气湍流传播时,使用梯度波前传感器和线性最小二乘重建器的常规自适应光学(AO)系统的性能非常差。这是由于无法使用最小二乘法重建的波前涡旋所致。该问题的一种解决方案是使用非线性重建器,但是第二种解决方案是使用避免重建问题的直接波前传感器。直接波前传感器是简单的自参考干涉仪,可直接测量参考光束和像差光束之间的相位差。在这项研究中,测试了点衍射干涉仪在闭环大气AO系统中的可行性。使用改进的Mach-Zehnder装置建立了点衍射干涉仪。该系统在闭环中使用铁电SLM进行校正后产生像差波。 SLM用于模拟校正设备,该设备对应于行程为±π的方形,仅12x12,仅活塞的分段镜。在大气湍流像差的情况下测试了其性能。同时检查均匀强度和闪烁病例。通过仿真和实验研究表明,该点衍射干涉仪在闭环操作中既能均匀强度又能产生闪烁像差。在相位不连续的情况下它的鲁棒性使其成为强闪烁中波前感测的有前途的选择。

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