论文标题

CHES:用于检测附近太阳能型星星可居住行星的太空式天文任务

CHES: a space-borne astrometric mission for the detection of habitable planets of the nearby solar-type stars

论文作者

Ji, Jianghui, Li, Haitao, Zhang, Junbo, Fang, Liang, Li, Dong, Wang, Su, Cao, Yang, Deng, Lei, Li, Baoquan, Xian, Hao, Gao, Xiaodong, Zhang, Ang, Li, Fei, Liu, Jiacheng, Qi, Zhaoxiang, Jin, Sheng, Liu, Yaning, Chen, Guo, Li, Mingtao, Dong, Yao, Zhu, Zi, consortium, CHES

论文摘要

提议近距离居住的系外行星调查(CHES)任务,以发现附近太阳能型星的宜居地球状行星($ \ sim 10〜 \ Mathrm {pc} $远离我们的太阳能系统)通过微弧形相对星形统计。 CHES的主要科学目标是:在绕着附近100 FGK的可居住区中寻找地球双胞胎或陆地行星;进一步进行全面的调查并广泛地描述了附近的行星系统。主要有效载荷是高质量,低稳定,高稳定性望远镜。光学子系统是一个同轴三晶Anastigmat(TMA),其$ 1.2 \ MATHRM {〜M} $ - aperture,$ 0.44^{\ circ} \ times 0.44^{\ circ} $ nm} $ nm} $ nm} $ nm} $ nm nm} $ nm nm nm nm} $ nm}相机焦平面由81个马赛克科学CMOS探测器组成,每个检测器$ 4 \ mathrm {〜k} \ times 4 \ mathrm {〜k} $ Pixels。使用杂化激光干涉校准技术来确保微弧形级别(1 $μ$ AS)相对天体测量精度,以满足检测类似地球行星的要求。 Ches卫星在Sun-Earth L2点运行,并观察整个目标恒星5年。 CHE将根据来自太空的微弧形星形统计,将首次直接测量地球双胞胎和地球双胞胎和超级地球的倾向。这肯定会增强我们对附近各种行星系统形成的理解,以及太阳能恒星的其他世界的出现,最后反映出我们自己的太阳系的演变。

The Closeby Habitable Exoplanet Survey (CHES) mission is proposed to discover habitable-zone Earth-like planets of the nearby solar-type stars ($\sim 10~\mathrm{pc}$ away from our solar system) via micro-arcsecond relative astrometry. The major scientific objectives of CHES are: to search for Earth Twins or terrestrial planets in habitable zones orbiting 100 FGK nearby stars; further to conduct a comprehensive survey and extensively characterize the nearby planetary systems. The primary payload is a high-quality, low-distortion, high-stability telescope. The optical subsystem is a coaxial three-mirror anastigmat (TMA) with a $1.2 \mathrm{~m}$-aperture, $0.44^{\circ} \times 0.44^{\circ}$ field of view and $500 \mathrm{~nm}-900 \mathrm{~nm}$ working waveband. The camera focal plane is composed of 81 MOSAIC scientific CMOS detectors each with $4 \mathrm{~K} \times 4 \mathrm{~K}$ pixels. The heterodyne laser interferometric calibration technology is employed to ensure micro-arcsecond level (1 $μ$as) relative astrometry precision to meet the requirements for detection of Earth-like planets. CHES satellite operates at the Sun-Earth L2 point and observes the entire target stars for 5 years. CHES will offer the first direct measurements of true masses and inclinations of Earth Twins and super-Earths orbiting our neighbor stars based on micro-arcsecond astrometry from space. This will definitely enhance our understanding of the formation of diverse nearby planetary systems and the emergence of other worlds for solar-type stars, and finally to reflect the evolution of our own solar system.

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