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High Contrast Imaging in Multi-Star Systems: Progress in Technology Development and Lab Results

机译:多星系统中的高对比度成像:技术开发和实验室结果的进步

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We present the continued progress and laboratory results advancing the technology readiness of Multi-Star Wavefront Control (MSWC), a method to directly image planets and disks in multi-star systems such as Alpha Centauri. This method works with almost any coronagraph (or external occulter with a DM) and requires little or no change to existing and mature hardware. In particular, it works with single-star coronagraphs and does not require the off-axis star(s) to be coronagraphically suppressed. Because of the ubiquity of multistar systems, this method increases the science yield of many missions and concepts such as WFIRST, Exo-C/S, HabEx, LUVOIR, and potentially enables the detection of Earth-like planets (if they exist) around our nearest neighbor star, Alpha Centauri, with a small and low-cost space telescope such as ACESat. Our lab demonstrations were conducted at the Ames Coronagraph Experiment (ACE) laboratory and show both the feasibility as well as the trade-offs involved in using MSWC. We show several simulations and laboratory tests at roughly TRL-3 corresponding to representative targets and missions, including Alpha Centauri with WFIRST. In particular, we demonstrate MSWC in Super-Nyquist mode, where the distance between the desired dark zone and the off-axis star is larger than the conventional (sub-Nyquist) control range of the DM. Our laboratory tests did not yet include a coronagraph, but did demonstrate significant speckle suppression from two independent light sources at sub- as well as super-Nyquist separations.
机译:我们提出了持续进步和实验室结果,以提高多星波阵面控制(MSWC)的技术就绪性,该技术是直接对诸如Alpha Centauri等多星系统中的行星和盘进行成像的方法。这种方法几乎适用于所有日冕仪(或带有DM的外部掩星仪),几乎不需要或不需要更改现有和成熟的硬件。特别是,它可与单星日冕仪配合使用,并且不需要对离轴星进行日冕仪抑制。由于多星系统无处不在,因此该方法可提高许多任务和概念的科学产率,例如WFIRST,Exo-C / S,HabEx,LUVOIR,并有可能检测我们周围的类地行星(如果存在)最近的邻居恒星,Alpha Centauri,使用小型低成本太空望远镜,如ACESat。我们的实验室演示是在Ames日冕仪实验(ACE)实验室进行的,不仅显示了使用MSWC的可行性,而且还进行了权衡。我们展示了与代表目标和任务相对应的,大致处于TRL-3的几个模拟和实验室测试,包括带有WFIRST的Alpha Centauri。特别是,我们演示了超级奈奎斯特模式下的MSWC,其中所需的暗区和离轴恒星之间的距离大于DM的常规(亚奈奎斯特)控制范围。我们的实验室测试尚未包括日冕仪,但确实显示了两个独立光源在亚奈奎斯特和超级奈奎斯特分离下的明显斑点抑制。

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