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Correctability limitations imposed by spherical-wave scintillation in multi-conjugate adaptive optics

机译:多共轭自适应光学中球面波闪烁施加的可校正性限制

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Spherical-wave scintillation is shown to impose multi-conjugate adaptive optics (MCAO) correctability limitations that are independent of wavefront sensing and reconstruction. Residual phase and log-amplitude variances induced by scintillation in weak turbulence are derived using (diffraction-based) diffractive MCAO spatial filters or (diffraction-ignorant) geometric MCAO proportional gains as linear open-loop control parameters. In the case of Kolmogorov turbulence, expressions involving the Rytov variance and/or weighted C_n~2 integrals apply. Differences in performance between diffractive MCAO and geometric MCAO resemble chromatic errors. Optimal corrections based on least squares imply irreducible performance limits that are validated by wave-optic simulations.
机译:球面波闪烁显示出施加了多共轭自适应光学(MCAO)的可校正性限制,该限制与波前感测和重建无关。使用(基于衍射的)衍射MCAO空间滤波器或(无衍射的)几何MCAO比例增益作为线性开环控制参数,可以得出在弱湍流中由闪烁引起的残留相位和对数幅度方差。对于Kolmogorov湍流,适用涉及Rytov方差和/或加权C_n〜2积分的表达式。衍射MCAO和几何MCAO之间的性能差异类似于色差。基于最小二乘的最佳校正意味着不可限制的性能极限,该极限已通过波光仿真验证。

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