论文标题
光度法作为径向速度分析中恒星活性的代理
Photometry as a proxy for stellar activity in radial velocity analyses
论文作者
论文摘要
恒星活动仍然是测量径向速度光谱的精确行星参数的限制因素,这尤其是在寻找地球质量行星绕着太阳状恒星的可居住区域中绕的地球质量行星。减轻恒星活动的一种方法是使用径向速度和时间序列光度法的联合分析。我们提供了对太阳的同时磁盘集成光度法和径向速度数据的分析,以确定组合分析的有用限制。我们发现,太阳光度法的简单期间图或自相关分析给出了正确的旋转周期<50%的时间。因此,我们使用高斯过程来研究太阳光度法的时间变异性,并直接将同时的光度法与径向速度数据进行比较。我们发现,在70年的太阳光度法中,高参数后期相对稳定,并且振幅跟踪太阳周期。我们观察到同时光度法和径向速度数据的高参数后期良好的一致性。我们的主要结论是建议在高斯工艺中包括额外的先验,以限制进化时间尺度大于复发时间尺度(即旋转期),以恢复更加物理上可行和有用的结果。我们的结果表明,这种同时监视可能是增强径向速度调查精确度的有用工具。
Stellar activity remains a limiting factor in measuring precise planet parameters from radial velocity spectroscopy, not least in the search for Earth mass planets orbiting in the habitable zones of Sun-like stars. One approach to mitigate stellar activity is to use combined analyses of both radial velocity and time-series photometry. We present an analysis of simultaneous disk-integrated photometry and radial velocity data of the Sun in order to determine the useful limits of a combined analysis. We find that simple periodogram or autocorrelation analysis of solar photometry give the correct rotation period <50% of the time. We therefore use a Gaussian process to investigate the time variability of solar photometry and to directly compare simultaneous photometry with radial velocity data. We find that the hyperparameter posteriors are relatively stable over 70 years of solar photometry and the amplitude tracks the solar cycle. We observe good agreement between the hyperparameter posteriors for the simultaneous photometry and radial velocity data. Our primary conclusion is a recommendation to include an additional prior in Gaussian process fits to constrain the evolutionary timescale to be greater than the recurrence timescale (ie., the rotation period) to recover more physically plausible and useful results. Our results indicate that such simultaneous monitoring may be a useful tool in enhancing the precision of radial velocity surveys.