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Detecting and Characterizing Exoplanets with a 1.4-m space telescope: the Pupil mapping Exoplanet Coronagraphic Observer (PECO)

机译:用1.4米太空望远镜检测和表征系外行星:学生制图系外行星日冕观测仪(PECO)

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The Pupil-mapping Exoplanet Coronagraphic Observer (PECO) mission concept uses a coronagraphic 1.4-m space-based telescope to both image and characterize extra-solar planetary systems at optical wavelengths. PECO delivers 10~-10 contrast at 2 λ/D separation (0.15") using a high-performance Phase-Induced Amplitude Apodization (PIAA) coronagraph which remaps the telescope pupil and uses nearly all of the light coming into the aperture. For exoplanet characterization, PECO acquires narrow field images simultaneously in 16 spectral bands over wavelengths from 0.4 to 0.9 μm, utilizing all available photons for maximum wavefront sensing and sensitivity for imaging and spectroscopy. The optical design is optimized for simultaneous low-resolution spectral characterization of both planets and dust disks using a moderate-sized telescope. PECO will image the habitable zones of about 20 known F, G, K stars at a spectral resolution of Rwl5 with sensitivity sufficient to detect and characterize Earth-like planets and to map dust disks to within a fraction of our own zodiacal dust cloud brightness. The PIAA coronagraph adopted for PECO reduces the required telescope diameter by a factor of two compared with other coronagraph approaches that were considered for Terrestrial Planet Finder Coronagraph Flight Baseline 1, and would therefore also be highly valuable for larger telescope diameters. We report on ongoing laboratory activities to develop and mature key PECO technologies, as well as detailed analysis aimed at verifying PECO's wavefront and pointing stability requirement can be met without requiring development of new technologies.
机译:小学生制图系外行星日冕观测者(PECO)任务概念使用日冕1.4米天基望远镜对光波长的太阳系外行星系统进行成像和表征。 PECO使用高性能相感应振幅变迹(PIAA)日冕仪,以2λ/ D间隔(0.15“)提供10〜-10对比度,可重新映射望远镜的瞳孔,并使用进入光圈的几乎所有光线。表征方面,PECO利用所有可用的光子,在0.4至0.9μm的波长范围内,同时在16个光谱带中同时获取窄场图像,以实现最大的波前感测以及成像和光谱学的灵敏度。 PECO将以Rwl5的光谱分辨率对大约20个已知的F,G,K恒星的宜居区域进行成像,其灵敏度足以检测和表征类地行星并将尘埃盘映射到内部PECO采用的PIAA日冕仪将所需的望远镜直径减小了两倍,而w在地面行星探测器电晕仪飞行基线1中考虑过的其他电晕仪方法,因此对于较大的望远镜直径也将具有很高的价值。我们报告了正在进行的实验室活动,以开发和成熟关键的PECO技术,并进行了详细分析,旨在验证PECO的波前和指向稳定性的要求,而无需开发新技术。

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