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Improving image contrast for the direct detection of exo-planets at small inner working angles

机译:改善图像对比度,以便在小内工作角下直接检测系外行星

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The detection of extrasolar planets, using both space- and ground-based telescopes, is one of the most exciting fields in astronomy today, with the ultimate goal of the direct direction of earth-like planets in the habitable zone. It is with this vision that the explorer mission EXCEDE selected by NASA for technology development, is designed. EXCEDE (Exoplanetary Circumstellar Environment and Disk Explorer) is composed of a 0.7 m telescope equipped with a Phase-Induced Amplitude Apodization Coronagraph (PIAA-C) and a 2000-element MEMS deformable mirror, capable of raw contrasts of 10~(-6) at 1.2 λ/D and 10~(-7) above 2 λ/D. Obtaining these contrasts requires precise wavefront control algorithms used in conjuncture with deformable mirrors. Unlike other optical systems, where the goal is to obtain the best wavefront, we aim at canceling the diffracted light coming from the parent star in a specific region to increase signal-to-noise of the planet. To do so, we use wavefront control techniques, such as Electric Field Conjugation (EFC) and speckle nulling, already developed and soon to be operational on 8-m class telescopes. One caveat is that the demonstration was done at moderate separations (r> 3λ/D).In this paper, we present tricks and techniques to perform high-contrast imaging at 1.2 λ/d using the NASA Ames Coronagraph Experiment testbed.
机译:使用天基和地面望远镜探测太阳系外行星是当今天文学中最激动人心的领域之一,其最终目标是将地球状行星直接指向可居住区域。正是基于这种愿景,设计了NASA选择用于技术开发的探索者任务EXCEDE。 EXCEDE(行星外行星环境和磁盘资源管理器)由一台0.7 m望远镜组成,该望远镜配备有相位感应振幅切趾日冕仪(PIAA-C)和2000元素的MEMS变形镜,能够产生10〜(-6)的原始对比度。在1.2λ/ D和高于2λ/ D的10〜(-7)处。要获得这些对比度,需要结合可变形镜使用精确的波前控制算法。与其他旨在获得最佳波前的光学系统不同,我们的目的是消除特定区域中来自母星的衍射光,以增加行星的信噪比。为此,我们使用了波前控制技术,例如电场共轭(EFC)和散斑置零,这些技术已经开发并且很快将在8米级望远镜上运行。需要说明的是,该演示是在中等间隔(r>3λ/ D)下完成的。在本文中,我们介绍了使用NASA Ames冠冕仪实验台以1.2λ/ d进行高对比度成像的技巧和技术。

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