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首页> 外文期刊>The Astrophysical journal >FOCAL PLANE WAVEFRONT SENSING USING RESIDUAL ADAPTIVE OPTICS SPECKLES
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FOCAL PLANE WAVEFRONT SENSING USING RESIDUAL ADAPTIVE OPTICS SPECKLES

机译:利用残余自适应光学散斑的局域平面波传感

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摘要

Optical imperfections, misalignments, aberrations, and even dust can significantly limit sensitivity in high-contrast imaging systems such as coronagraphs. An upstream deformable mirror (DM) in the pupil can be used to correct or compensate for these flaws, either to enhance the Strehl ratio or suppress the residual coronagraphic halo. Measurement of the phase and amplitude of the starlight halo at the science camera is essential for determining the DM shape that compensates for any non-common-path (NCP) wavefront errors. Using DM displacement ripples to create a series of probe and anti-halo speckles in the focal plane has been proposed for space-based coronagraphs and successfully demonstrated in the lab. We present the theory and first on-sky demonstration of a technique to measure the complex halo using the rapidly changing residual atmospheric speckles at the 6.5?m MMT telescope using the Clio mid-IR camera. The AO system's wavefront sensor measurements are used to estimate the residual wavefront, allowing us to approximately compute the rapidly evolving phase and amplitude of speckle halo. When combined with relatively short, synchronized science camera images, the complex speckle estimates can be used to interferometrically analyze the images, leading to an estimate of the static diffraction halo with NCP effects included. In an operational system, this information could be collected continuously and used to iteratively correct quasi-static NCP errors or suppress imperfect coronagraphic halos.
机译:光学缺陷,错位,像差甚至灰尘会极大地限制高对比度成像系统(如日冕仪)中的灵敏度。瞳孔中的上游可变形镜(DM)可用于校正或补偿这些缺陷,以增强Strehl比率或抑制残留的冠状晕。在科学相机上测量星光晕的相位和幅度对于确定可补偿任何非共通(NCP)波前误差的DM形状至关重要。已提出使用DM位移波纹在焦平面上产生一系列探针和抗晕斑点,这是针对天基日冕仪提出的,并在实验室中成功进行了演示。我们介绍了使用Clio中红外相机在6.5?m MMT望远镜上使用快速变化的残留大气斑点测量复杂光晕的技术的理论和首次空中演示。 AO系统的波前传感器测量值用于估计残留波前,从而使我们能够近似计算散斑晕的快速演变相位和幅度。当与相对较短的同步科学相机图像结合使用时,可以使用复杂的斑点估计进行干涉测量分析图像,从而得出包含NCP效应的静态衍射光晕估计。在操作系统中,可以连续收集此信息,并将其用于迭代校正准静态NCP错误或抑制不完美的冕晕。

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