首页> 外文会议>Conference on Space Telescopes and Instrumentation >Virtual wavefront compensation and speckle reduction in coronagraph by unbalanced nulling interferometer (UNI) and phase and amplitudecorrection (PAC)
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Virtual wavefront compensation and speckle reduction in coronagraph by unbalanced nulling interferometer (UNI) and phase and amplitudecorrection (PAC)

机译:通过不平衡调零干涉仪(UNI)和相位和幅度校正(PAC)进行冠状图的虚拟波前补偿和斑点减少

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We proposed a novel method based on a pre-optics setup that behaves partly as a low-efficiency coronagraph, and partly as a high-sensitivity wavefront aberration compensator (phase and amplitude). The combination of the two effects results in a highly accurate corrected wavefront. First, an (intensity-) unbalanced nulling interferometer (UNI) performs a rejection of part of the wavefront electric field. Then the recombined output wavefront has its input aberrations magnified. Because of the unbalanced recombination scheme, aberrations can be free of phase singular points (zeros) and can therefore be compensated by a downstream phase and amplitude correction (PAC) adaptive optics system, using two deformable mirrors. In the image plane, the central star's peak intensity and the noise level of its speckled halo are reduced by the UNI-PAC combination: the output-corrected wavefront aberrations can be interpreted as an improved compensation of the initial (eventually already corrected) incident wavefront aberrations. The important conclusion is that not all the elements in the optical setup using UNI-PAC need to reach the lambda/10000 rms surface error quality. In the experiments, we observed the aberration magnification of more than 5 times and compensated to about lambda/70 rms which is the current limit of the AO system. This means that we reached to lambda/350 level virtually. We observed the speckle reduction in the focal plane with a coronagraph.
机译:我们提出了一种基于预光学设置的新颖方法,该方法的一部分表现为低效率的日冕仪,部分表现为高灵敏度的波前像差补偿器(相位和幅度)。两种效果的组合可产生高度准确的校正波前。首先,(强度)不平衡调零干涉仪(UNI)执行部分波前电场的抑制。然后,重组输出波前的输入像差被放大。由于不平衡的重组方案,像差可能没有相位奇异点(零),因此可以使用两个可变形镜通过下游相位和幅度校正(PAC)自适应光学系统进行补偿。在像面中,UNI-PAC组合可降低中心星的峰值强度和斑点光晕的噪声水平:输出校正后的波前像差可解释为对初始(最终已经校正)入射波前的改进补偿。畸变。重要的结论是,并非所有使用UNI-PAC的光学装置中的元件都需要达到λ/ 10000 rms的表面误差质量。在实验中,我们观察到了超过5倍的像差放大倍率,并补偿了大约λ/ 70 rms,这是AO系统的当前极限。这意味着我们实际上达到了lambda / 350的水平。我们用日冕仪观察了焦平面上的斑点减少。

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