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Lyot-plane phase masks for improved high-contrast imaging with a vortex coronagraph

机译:旋涡面相位掩膜可通过旋涡冠冕仪改善高对比度成像

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摘要

The vortex coronagraph is an optical instrument that precisely removes on-axis starlight allowing for high contrast imaging at small angular separation from the star, thereby providing a crucial capability for direct detection and characterization of exoplanets and circumstellar disks. Telescopes with aperture obstructions, such as secondary mirrors and spider support structures, require advanced coronagraph designs to provide adequate starlight suppression. We introduce a phase-only Lyot-plane optic to the vortex coronagraph that offers improved contrast performance on telescopes with complicated apertures. Potential solutions for the European Extremely Large Telescope (E-ELT) are described and compared. Adding a Lyot-plane phase mask relocates residual starlight away from a region of the image plane thereby reducing stellar noise and improving sensitivity to off-axis companions. The phase mask is calculated using an iterative phase retrieval algorithm. Numerically, we achieve a contrast on the order of $10^{-6}$ for a companion with angular displacement as small as $4~\lambda/D$ with an E-ELT type aperture. Even in the presence of aberrations, improved performance is expected compared to either a conventional vortex coronagraph or optimized pupil plane phase element alone.
机译:涡旋日冕仪是一种光学仪器,可以精确地去除轴上的星光,从而可以在与恒星的小角度间隔下进行高对比度成像,从而为直接探测和表征系外行星和星际盘提供了至关重要的能力。带有孔径障碍物的望远镜,例如副镜和蜘蛛架结构,需要先进的日冕仪设计以提供足够的星光抑制。我们在涡旋日冕仪中引入了仅相位的Lyot平面光学器件,可以改善孔径复杂的望远镜的对比度。描述并比较了欧洲超大型望远镜(E-ELT)的潜在解决方案。添加Lyot-plane相掩膜可将残留的星光从图像平面的区域移开,从而减少恒星噪声并提高对离轴同伴的灵敏度。使用迭代相位检索算法来计算相位掩码。在数值上,对于具有E-ELT型光圈的角位移小至$ 4〜\ lambda / D $的同伴,我们获得的对比度约为$ 10 ^ {-6} $。甚至在存在像差的情况下,与传统的涡旋日冕仪或单独的优化的光瞳平面相元件相比,也有望提高性能。

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