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首页> 外文期刊>Publications of the Astronomical Society of the Pacific >Astrometric detection of terrestrial planets in the habitable zones of nearby stars with SIM PlanetQuest
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Astrometric detection of terrestrial planets in the habitable zones of nearby stars with SIM PlanetQuest

机译:使用SIM PlanetQuest对附近恒星可居住区域中的行星进行占星术检测

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SIM PlanetQuest (formerly the Space Interferometry Mission) is a space-borne Michelson interferometer for precision stellar astrometry, with a 9 m baseline, currently slated for launch in 2016. One of the principal science goals is the astrometric detection and orbital characterization of terrestrial planets in the habitable zones of nearby stars. Differential astrometry of the target star against a set of reference stars lying within 1 degrees will allow measurement of the target star's reflex motion with astrometric accuracy of 1 mu as in a single measurement. The purpose of the present paper is to quantitatively assess SIM's capability for detection (as opposed to characterization by orbital determination) of terrestrial planets in the habitable zones of nearby stars. Note that the orbital periods of these planets are generally shorter than the 5 year SIM mission. We formulate a "joint periodogram" as a tool for planet detection from astrometric data. For adequately sampled orbits (i.e., five or more observations per period over a sampling time span longer than the orbital period), we find that the joint periodogram is more sensitive than the chi(2) test for the null hypothesis. In our analysis 2 of the problem, we use Monte Carlo simulations of orbit detection, together with realistic observing scenarios, actual target and reference star lists, realistic estimates of SIM instrument performance, and plausible distributions of planetary system parameters.
机译:SIM PlanetQuest(前身为太空干涉仪任务)是一款用于精密恒星天文测量的星载迈克尔逊干涉仪,基线定为9 m,目前计划于2016年发射。主要科学目标之一是对天体行星进行天体探测和轨道定性在附近恒星的宜居区域。目标星与一组在1度以内的参考星的差分天体测量法可以像单次测量中那样以1亩的天体测量精度测量目标星的反射运动。本文的目的是定量评估SIM探测邻近恒星可居住区域中的地球行星的能力(与通过轨道确定特征相反)。请注意,这些行星的轨道周期通常比5年SIM任务短。我们制定了“联合周期图”作为从天文学数据中进行行星探测的工具。对于充分采样的轨道(即,在一个采样时间跨度上比轨道周期更长的时间段内,每个周期有五个或更多个观测值),我们发现联合周期图比chi(2)检验对零假设的敏感性更高。在问题的分析2中,我们使用蒙特卡洛模拟的轨道探测技术,以及现实的观测方案,实际的目标星和参考星表,对SIM仪器性能的现实估计以及行星系统参数的合理分布。

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