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ARTIFICIAL INCOHERENT SPECKLES ENABLE PRECISION ASTROMETRY AND PHOTOMETRY IN HIGH-CONTRAST IMAGING

机译:人工非相干斑点可在高对比度成像中实现精密的天文和光度法

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摘要

State-of-the-art coronagraphs employed on extreme adaptive optics enabled instruments are constantly improving the contrast detection limit for companions at ever-closer separations from the host star. In order to constrain their properties and, ultimately, compositions, it is important to precisely determine orbital parameters and contrasts with respect to the stars they orbit. This can be difficult in the post-coronagraphic image plane, as by definition the central star has been occulted by the coronagraph. We demonstrate the flexibility of utilizing the deformable mirror in the adaptive optics system of the Subaru Coronagraphic Extreme Adaptive Optics system to generate a field of speckles for the purposes of calibration. Speckles can be placed up to 22.5 lambda/D from the star, with any position angle, brightness, and abundance required. Most importantly, we show that a fast modulation of the added speckle phase, between 0 and pi, during a long science integration renders these speckles effectively incoherent with the underlying halo. We quantitatively show for the first time that this incoherence, in turn, increases the robustness and stability of the adaptive speckles, which will improve the precision of astrometric and photometric calibration procedures. This technique will be valuable for high-contrast imaging observations with imagers and integral field spectrographs alike.
机译:启用极端自适应光学技术的仪器上使用的最先进的日冕仪正在不断改善与主恒星距离越来越近的同伴的对比度检测极限。为了限制它们的特性并最终限制其组成,精确确定轨道参数和相对于它们绕行的恒星的对比度很重要。在冠冕后图像平面中这可能很困难,因为根据定义,中心星已被冠冕仪遮盖了。我们展示了在斯巴鲁冠状极端自适应光学系统的自适应光学系统中利用可变形反射镜来生成斑点场以进行校准的灵活性。散斑距离恒星的距离最高可达22.5 lambda / D,可根据需要调整任何角度,亮度和丰度。最重要的是,我们证明了在长时间的科学整合过程中,对添加的散斑相位的快速调制(介于0和pi之间)使这些散斑与下层光晕有效地不一致。我们首次定量显示了这种不一致性,反过来又增加了自适应散斑的鲁棒性和稳定性,这将提高天文和光度学校准程序的精度。该技术对于使用成像仪和积分场光谱仪进行高对比度成像观察非常有价值。

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