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Long-term radial-velocity variations of the Sun as a star: The HARPS view

机译:太阳作为明星的长期径向速度变化:竖琴视图

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Context. Stellar radial velocities play a fundamental role in the discovery of extrasolar planets and the measurement of their physical parameters as well as in the study of stellar physical properties. Aims. We investigate the impact of the solar activity on the radial velocity of the Sun using the HARPS spectrograph to obtain measurements that can be directly compared with those acquired in the extrasolar planet search programmes. Methods. We used the Moon, the Galilean satellites, and several asteroids as reflectors to measure the radial velocity of the Sun as a star and correlated this velocity with disc-integrated chromospheric and magnetic indexes of solar activity that are similar to stellar activity indexes. We discuss in detail the systematic effects that affect our measurements and the methods to account for them. Results. We find that the radial velocity of the Sun as a star is positively correlated with the level of its chromospheric activity at ~ 95 percent significance level. The amplitude of the long-term variation measured in the 2006 ? 2014 period is 4.98 ± 1.44 m/s, which is in good agreement with model predictions. The standard deviation of the residuals obtained by subtracting a linear best fit is 2.82 m/s and is due to the rotation of the reflecting bodies and the intrinsic variability of the Sun on timescales shorter than the activity cycle. A correlation with a lower significance is detected between the radial velocity and the mean absolute value of the line-of-sight photospheric magnetic field flux density. Conclusions. Our results confirm similar correlations found in other late-type main-sequence stars and provide support to the predictions of radial velocity variations induced by stellar activity based on current models.
机译:语境。恒星径向速度在发现额外行星和物理参数的测量中起着基本作用以及恒星物理性质的研究。目标。我们调查太阳能活动对太阳径向速度的影响,使用竖琴谱仪获得可以直接与额外行星搜索程序中获取的测量的测量。方法。我们使用月球,伽利泥卫星和几个小行星作为反射器,以测量太阳作为星的径向速度,并将这种速度与圆盘集成的透射性和太阳能活动的磁指数相关,类似于恒星活性指标。我们详细讨论了影响我们的测量的系统效果以及要考虑它们的方法。结果。我们发现太阳作为恒星的径向速度与其致态活性水平呈正相关,在〜95%的意义水平上。在2006年测量的长期变化的幅度? 2014年期间为4.98±1.44米/秒,与模型预测有关。通过减去线性最佳配合而获得的残留的标准偏差为2.82米/秒,并且由于反射体的旋转和太阳的固有变异性在短于活动周期。在径向速度和视线线的平均绝对值之间检测与较低意义的相关性。结论。我们的结果证实了在其他后型主序列恒星中发现的类似相关性,并为基于当前模型的恒星活动引起的径向速度变化的预测提供了支持。

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