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Focal plane wavefront sensing and control strategies for high-contrast imaging on the MagAO-X instrument

机译:在MagAO-X仪器上进行高对比度成像的焦平面波前感测和控制策略

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The Magellan extreme adaptive optics (MagAO-X) instrument is a new extreme adaptive optics (ExAO) system designed for operation in the visible to near-IR which will deliver high contrast-imaging capabilities. The main AO system will be driven by a pyramid wavefront sensor (PyWFS); however, to mitigate the impact of quasi-static and non-common path (NCP) aberrations, focal plane wavefront sensing (FPWFS) in the form of low-order wavefront sensing (LOWFS) and spatial linear dark field control (LDFC) will be employed behind a vector apodizing phase plate (vAPP) coronagraph using rejected starlight at an intermediate focal plane. These techniques will allow for continuous high-contrast imaging performance at the raw contrast level delivered by the vAPP coronagraph (~6 × 10~(-5)). We present simulation results for LOWFS and spatial LDFC with a vAPP coronagraph, as well as laboratory results for both algorithms implemented with a vAPP coronagraph at the University of Arizona Extreme Wavefront Control Lab.
机译:麦哲伦极端自适应光学(MagAO-X)仪器是一种新型的极端自适应光学(ExAO)系统,设计用于在可见到近红外范围内操作,可提供高对比度成像功能。主AO系统将由金字塔波前传感器(PyWFS)驱动;然而,为了减轻准静态和非公共路径(NCP)像差的影响,将采用低阶波前感测(LOWFS)和空间线性暗场控制(LDFC)形式的焦平面波前感测(FPWFS)在矢量变迹相板(vAPP)日冕仪的后面使用,在中间焦平面处使用被拒绝的星光。这些技术将在vAPP冠状动脉造影仪(〜6×10〜(-5))提供的原始对比度水平下实现连续的高对比度成像性能。我们用vAPP冠状图显示LOWFS和空间LDFC的仿真结果,以及亚利桑那大学极限波前控制实验室用vAPP冠状图实施的两种算法的实验室结果。

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