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Temporally averaged speckle noise in wavefront sensors for beam projection in weak turbulence

机译:在弱湍流中的波线投影中的波前传感器中的时间平均斑点噪声

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摘要

Adaptive optics (AO) compensation for imaging or coherent illumination of a remote object relies on accurate sensing of atmospheric aberrations. When a coherent beacon is projected onto the object to enable wavefront sensing, the reflected reference wave will exhibit random variation in phase and amplitude characteristics of laser speckle. In a Shack-Hartmann wavefront sensor (SHWFS) measurement, speckle effects cause fluctuations in the intensity of focal spots and errors in the position of their centroids relative to those expected from purely atmospheric phase aberrations. The resulting error in wavefront measurements negatively impacts the quality of atmospheric phase conjugation. This paper characterizes the effect of reflected laser speckle on the accuracy of SHWFS measurements for ground-to-space beam projection systems in weak turbulence conditions. We show via simulation that the speckle-induced error in centroiding depends on the ratio between beacon diameter and the diffraction-limited resolution of the lenslet and confirm these results with experimental data. We provide experimental validation that averaging of SHWFS lenslet spot intensities over speckle realizations converges to the incoherent intensity as expected. We further show that the effects of shot noise and speckle noise add in quadrature, simplifying noise analysis. Finally, we characterize the effect of temporal averaging under typical conditions of target motion and integration time. This work provides a straightforward set of relations that can help investigators more accurately estimate the required integration time for wavefront sensing in the presence of laser speckle. (C) 2021 Optical Society of America
机译:遥感物体成像或相干照明的自适应光学(AO)补偿依赖于大气像差的精确传感。当相干信标投射到物体上以实现波前传感时,反射的参考波将呈现出激光散斑相位和振幅特性的随机变化。在Shack-Hartmann波前传感器(SHWFS)测量中,散斑效应会导致焦点强度的波动,并导致其质心位置相对于纯大气相位像差的误差。由此产生的波前测量误差会对大气相位共轭的质量产生负面影响。本文描述了在弱湍流条件下,反射激光散斑对地-空光束投影系统SHWFS测量精度的影响。我们通过模拟表明,散斑引起的质心误差取决于信标直径和透镜衍射极限分辨率之间的比值,并用实验数据证实了这些结果。我们提供了实验验证,SHWFS小透镜光斑强度在散斑实现上的平均值收敛到预期的非相干强度。我们进一步证明了散粒噪声和散斑噪声的影响加上了正交性,简化了噪声分析。最后,我们描述了在目标运动和积分时间的典型条件下时间平均的效果。这项工作提供了一组简单的关系,可以帮助研究人员更准确地估计在存在激光散斑的情况下波前传感所需的积分时间。(2021)美国光学学会

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  • 来源
    《Applied optics》 |2021年第16期|共9页
  • 作者单位

    MIT Dept Aeronaut &

    Astronaut 77 Massachusetts Ave Cambridge MA 02139 USA;

    MIT Lincoln Lab 244 Wood St Lexington MA 02421 USA;

    MIT Lincoln Lab 244 Wood St Lexington MA 02421 USA;

    MIT Lincoln Lab 244 Wood St Lexington MA 02421 USA;

    MIT Dept Aeronaut &

    Astronaut 77 Massachusetts Ave Cambridge MA 02139 USA;

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  • 正文语种 eng
  • 中图分类 应用;
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