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Coronagraphic phase diversity: a simple focal plane sensor for high-contrast imaging

机译:冠状动脉相位分集:用于高对比度成像的简单焦平面传感器

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摘要

Exoplanet direct imaging is a challenging goal of today 's astronomical instrumentation. Several high-contrast imaging instruments dedicated to this task are currently being integrated; they are ultimately limited by the presence of quasi-static speckles in the imaging focal plane. These speckles originate in residual quasi-static optical aberrations, which must be measured and compensated for, typically at a nanometric level. We present a novel focal plane wavefront sensor (WFS) designed for this particular application. It is an extension of the phase diversity technique to coronagraphic imaging. This sensor requires no dedicated hardware and uses only two scientific images differing from a known aberration, which can be conveniently introduced by the adaptive optics subsystem. The aberrations are therefore calibrated all the way down to the scientific camera, without any differential aberrations between the sensor and the scientific camera. We show the potential of this WFS by means of simulations, and we perform a preliminary experimental validation.
机译:系外行星直接成像是当今天文仪器的一项具有挑战性的目标。目前正在集成几种专用于此任务的高对比度成像仪器。它们最终受到成像焦平面中准静态斑点的限制。这些斑点源自残余的准静态光学像差,通常必须在纳米级上对其进行测量和补偿。我们提出了一种针对这种特殊应用而设计的新型焦平面波前传感器(WFS)。它是相变技术向冠状动脉成像的扩展。该传感器不需要专用硬件,并且仅使用与已知像差不同的两个科学图像,可以通过自适应光学子系统方便地引入这些图像。因此,像差一直被校准到科学相机,而传感器和科学相机之间没有任何差分像差。我们通过模拟展示了WFS的潜力,并进行了初步的实验验证。

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