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Spectral characterization and differential rotation study of active CoRoT stars

机译:活性CoRoT星的光谱表征和差旋转研究。

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The CoRoT space telescope observed nearly 160?000 light curves. Among the most outstanding is that of the young, active planet host star CoRoT-2A. In addition to deep planetary transits, the light curve of CoRoT-2A shows strong rotational variability and a superimposed beating pattern. To study the stars that produce such an intriguing pattern of photometric variability, we identified a sample of eight stars with rotation periods between 0.8 and 11 days and photometric variability amplitudes of up to 7.5%, showing a similar CoRoT light curve. We also obtained high-resolution follow-up spectroscopy with TNG/SARG and carried out a spectral analysis with SME and MOOG. We find that the color dependence of the light curves is consistent with rotational modulation due to starspots and that latitudinal differential rotation provides a viable explanation for the light curves, although starspot evolution is also expected to play an important role. Our MOOG and SME spectral analyses provide consistent results, showing that the targets are dwarf stars with spectral types between F and mid-K. Detectable Li? i absorption in four of the targets confirms a low age of 100–400 Myr also deduced from gyrochronology. Our study indicates that the photometric beating phenomenon is likely attributable to differential rotation in fast-rotating stars with outer convection zones.
机译:CoRoT太空望远镜观察到近160,000条光曲线。其中最杰出的是年轻活跃的行星宿主恒星CoRoT-2A。除深层行星过渡外,CoRoT-2A的光曲线还显示出很强的旋转可变性和叠加的跳动模式。为了研究产生这种引人入胜的光度变异性模式的恒星,我们鉴定了八颗恒星,其旋转周期在0.8到11天之间,光度变异性幅度高达7.5%,显示出相似的CoRoT光曲线。我们还使用TNG / SARG获得了高分辨率的后续光谱,并使用SME和MOOG进行了光谱分析。我们发现,光曲线的颜色依赖性与星点引起的旋转调制相一致,并且纬度的纬向旋转为光曲线提供了可行的解释,尽管星点的演化也有望发挥重要作用。我们的MOOG和SME光谱分析提供了一致的结果,表明目标是矮星,光谱类型在F到K中。李侦探我对四个靶标的吸收证实了也由陀螺年代学推论得出的100-400 Myr低年龄段。我们的研究表明,光度拍打现象很可能归因于具有外部对流区的快速旋转恒星的旋转差。

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