论文标题

探索开普勒信号的鲁棒性,以删除主动和矫尿特征

Exploring the robustness of Keplerian signals to the removal of active and telluric features

论文作者

Lisogorskyi, Maksym, Jones, Hugh R. A., Feng, Fabo, Butler, R. Paul, Vogt, Steven S.

论文摘要

我们检查了活性和牙槽诱导的径向速度信号对用碘吸收细胞采集的高分辨率光谱的影响。我们根据表征良好的K1V星Alpha Centauri B排除了2个包含活性和洁尿线的Angstrom光谱块,并说明了epsilon Eridani的方法 - 一个活性K2V恒星,具有长时间的低振幅行星信号。从径向速度计算中去除光谱的活性和矫正敏感部分后,行星信号的重要性增加了,恒星旋转信号消失了。为了评估程序的鲁棒性,我们根据去除频谱的随机块进行蒙特卡洛模拟。模拟证实,由活动和矫治作用影响的线路的去除提供了一种检查给定开普勒信号的鲁棒性的方法。我们还测试了HD 40979上的方法,该方法是具有较大振幅行星信号的活动F8V恒星。我们的蒙特卡洛模拟表明,F恒星中开普勒信号的重要性对波长更为敏感。与K恒星不同,从F恒星中去除活动线会大大降低径向速度的精度。在这种情况下,我们从F星中删除k星的活动线并不能提供简单的有用诊断,因为它具有较小的径向速度信息,并且在很大程度上依赖于强的活动线。

We examine the influence of activity- and telluric-induced radial velocity signals on high resolution spectra taken with an iodine absorption cell. We exclude 2 Angstrom spectral chunks containing active and telluric lines based on the well characterised K1V star Alpha Centauri B and illustrate the method on Epsilon Eridani - an active K2V star with a long period low amplitude planetary signal. After removal of the activity- and telluric-sensitive parts of the spectrum from the radial velocity calculation, the significance of the planetary signal is increased and the stellar rotation signal disappears. In order to assess the robustness of the procedure, we perform Monte Carlo simulations based on removing random chunks of the spectrum. Simulations confirm that the removal of lines impacted by activity and tellurics provides a method for checking the robustness of a given Keplerian signal. We also test the approach on HD 40979 which is an active F8V star with a large amplitude planetary signal. Our Monte Carlo simulations reveal that the significance of the Keplerian signal in the F star is much more sensitive to wavelength. Unlike the K star the removal of active lines from the F star greatly reduces the radial velocity precision. In this case, our removal of a K star active lines from an F star does not a provide a simple useful diagnostic because it has far less radial velocity information and heavily relies on the strong active lines.

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