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HARPS-N OBSERVES THE SUN AS A STAR

Astrophysical Journal Letters(2015)SCI 2区

Harvard Smithsonian Ctr Astrophys | Univ Geneva | Univ St Andrews | INAF Fdn Galileo Galilei

Cited 117|Views78
Abstract
Radial velocity (RV) perturbations induced by stellar surface inhomogeneities including spots, plages and granules currently limit the detection of Earth-twins using Doppler spectroscopy. Such stellar noise is poorly understood for stars other than the Sun because their surface is unresolved. In particular, the effects of stellar surface inhomogeneities on observed stellar radial velocities are extremely difficult to characterize, and thus developing optimal correction techniques to extract true stellar radial velocities is extremely challenging. In this paper, we present preliminary results of a solar telescope built to feed full-disk sunlight into the HARPS-N spectrograph, which is in turn calibrated with an astro-comb. This setup enables long-term observation of the Sun as a star with state-of-the-art sensitivity to RV changes. Over seven days of observing in 2014, we show an average 50 cm s−1 RV rms over a few hours of observation. After correcting observed radial velocities for spot and plage perturbations using full-disk photometry of the Sun, we lower by a factor of two the weekly RV rms to 60 cm s−1. The solar telescope is now entering routine operation, and will observe the Sun every clear day for several hours. We will use these radial velocities combined with data from solar satellites to improve our understanding of stellar noise and develop optimal correction methods. If successful, these new methods should enable the detection of Venus over the next two to three years, thus demonstrating the possibility of detecting Earth-twins around other solar-like stars using the RV technique.
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instrumentation: spectrographs,planets and satellites: detection,techniques: radial velocities
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要点】:本文通过使用HARPS-N光谱仪配合太阳望远镜和astro-comb校准,实现了对太阳作为恒星的高灵敏度视向速度变化观测,提出了一种减少恒星表面不均匀性对视向速度影响的新方法。

方法】:作者使用了一种新的观测方法,即通过太阳望远镜将全盘阳光引入HARPS-N光谱仪,并结合astro-comb进行校准,以观测太阳的视向速度变化。

实验】:在2014年的7天观测中,实验显示了几小时内平均50 cm s−1的视向速度均方根(RV rms),通过使用全盘太阳光度学对观测到的视向速度进行斑点和平坦修正后,将每周的RV rms降低至60 cm s−1。实验使用的数据集为太阳望远镜观测数据和太阳卫星数据。