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Empirical Green's Function Approach for Utilizing Millisecond Focal and Pupil Plane Telemetry in Exoplanet Imaging

机译:利用毫秒焦点遥测在外产成像中的经验绿色的功能方法

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Millisecond focal plane telemetry is now becoming practical due to a new generation of near-IR detector arrays with sub-electron noise that are capable of kHz readout rates. Combining these data with those simultaneously available from the wavefront sensing system allows the possibility of self-consistently determining the optical aberrations (the cause of quasi-static speckles) and the planetary image. This approach may be especially advantageous for finding planets within about 3 λ/D of the star where differential imaging is ineffective. As shown in a recent article by the author (J. Opt. Soc. Am. A., 33, 712, 2016), one must account for unknown aberrations in several non-conjugate planes of the optical system, which, in turn, requires ability to computational propagate the field between these planes. These computations are likely to be difficult to implement and expensive. Here, a far more convenient alternative based on empirical Green's functions is provided. It is shown that the empirical Green's function (EGF), which accounts for all multi-planar, non-common path aberrations, and results in a much more tractable and highly parallel computational problem. It is also shown that the EGF can be generalized to treat polarization, resulting in the empirical Green's tensor (EGT).
机译:毫秒焦平面遥测现在正在变得实用,因为新一代近红外探测器阵列具有能够进行KHz读数速率的子电子噪声。将这些数据与来自波前感传感系统同时可获得的这些数据允许自始终确定光学像差(准静态斑点的原因)和行星图像的可能性。这种方法可能特别有利于在差分成像无效的星形中的约3λ/ d内找到行星。如作者最近的一篇文章(J.OPT。SOC。AM。A.,33,712,2016),必须考虑到光学系统的几个非共轭平面中的未知像差,反过来,需要计算能力在这些平面之间传播字段。这些计算可能难以实现和昂贵。在这里,提供了基于经验绿色功能的更方便的替代方案。结果表明,经验绿色的函数(EGF),其占所有多平面,非公共路径像差,并导致更具易行且高度平行的计算问题。还表明,EGF可以是通则化以治疗偏振,导致经验绿色的张量(EGT)。

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