Hybrid Lyot Coronagraph for WFIRST: High Contrast Testbed Demonstration in Flight-like Low Flux Environment

被引:8
作者
Seo, Byoung-Joon [1 ]
Shi, Fang [1 ]
Balasubramanian, Bala [1 ]
Cady, Eric [1 ]
Gordon, Brian [1 ]
Kern, Brian [1 ]
Lam, Raymond [1 ]
Marx, David [1 ]
Moody, Dwight [1 ]
Muller, Richard [1 ]
Patterson, Keith [1 ]
Poberezhskiy, Ilya [1 ]
Prada, Camilo Mejia [1 ]
Riggs, A. J. Eldorado [1 ]
Trauger, John [1 ]
Wilson, Daniel [1 ]
机构
[1] CALTECH, Jet Prop Lab, 4800 Oak Grove Dr, Pasadena, CA 91109 USA
来源
SPACE TELESCOPES AND INSTRUMENTATION 2018: OPTICAL, INFRARED, AND MILLIMETER WAVE | 2018年 / 10698卷
基金
美国国家航空航天局;
关键词
WFIRST; HLC; Coronagraph; Testbed; Exoplanet;
D O I
10.1117/12.2314358
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
In order to validate required operation of the proposed Wide-Field InfraRed Survey Telescope (WFIRST) coronagraph instrument, we have built a testbed in Jet Propulsion Laboratory (JPL), which is analogous to the baseline WFIRST coronagraph instrument architecture. Since its birth in 2016, this testbed, named as Occulting Mask Coronagraph (OMC) testbed, has demonstrated several crucial technological milestones: Broadband high contrast demonstration in both Hybrid Lyot Coronagraph (HLC) and Shape Pupil Coronagraph (SPC) modes while the Low Order Wavefront Sensing and Control (LOWFS/C) subsystem senses and corrects the dynamic flight-like wavefront disturbances. In this paper, we present up-to-date progress of HLC mode demonstration in the OMC testbed. While injecting the fiight-like low photon flux starlight with expected Line of Sight (LoS) and Wavefront Error (WFE) perturbation to the OMC testbed, we demonstrate generating high contrast dark hole images. We first study the expected photon flux in actual flight environment, and estimate detection noise and estimation accuracy of the complex electric field if the wavefront sensing algorithm is used based on the pair-wise difference imaging. Then, we introduce our improved scheme to mitigate this photon-starved flight-like low flux environment. As a result, we generate a dark hole that meets the WFIRST raw contrast requirements using the 2nd magnitude star light. We establish the key ideas, describe test setups, and demonstrate test results with data analysis.
引用
收藏
页数:12
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