论文标题

Carmenes搜索M矮人周围的系外行星:对流偏移和星形径向速度的约束

The CARMENES search for exoplanets around M dwarfs: Convective shift and starspot constraints from chromatic radial velocities

论文作者

Baroch, D., Morales, J. C., Ribas, I., Herrero, E., Rosich, A., Perger, M., Anglada-Escudé, G., Reiners, A., Caballero, J. A., Quirrenbach, A., Amado, P. J., Jeffers, S. V., Cifuentes, C., Passegger, V. M., Schweitzer, A., Lafarga, M., Bauer, F. F., Béjar, V. J. S., Colomé, J., Cortés-Contreras, M., Dreizler, S., Galadí-Enríquez, D., Hatzes, A. P., Henning, Th., Kaminski, A., Kürster, M., Montes, D., Rodríguez-López, C., Zechmeister, M.

论文摘要

语境。由恒星活动引起的可变性代表了陆地系外行星的发现和表征的挑战,并使大气行星信号的解释变得复杂。 目标。我们旨在使用详细的建模工具来重现活动区域对径向速度测量的影响,这有助于识别对诱导的可变性产生影响的关键参数。 方法。我们通过模拟斑点特性的影响,对流运动引起的变化和旋转来分析恒星活性对径向速度的影响与波长的关系。我们将建模工作集中在活性星YZ CMI(GJ 285)上,该恒星YZ CMI(GJ 285)在光度和光谱上用carmenes和Telescopi JoanOró对其进行了光学监测。 结果。我们证明,不同波长的径向速度曲线会得出活性区域的关键特性的确定,包括点填充因子,温度对比度和位置,从而解决了它们之间的堕落。最值得注意的是,我们的模型也对对流运动敏感。结果表明,与太阳能恒星相比,M矮人的对流变化减少(与理论外推一致),并指出了一个小的全球对流红移而不是Blueshift。 结论。使用基于同时色的径向速度和光曲线的新方法,我们可以对恒星活动设定强大的限制,包括难以捉摸的参数,例如净对流运动效应。

Context. Variability caused by stellar activity represents a challenge to the discovery and characterization of terrestrial exoplanets and complicates the interpretation of atmospheric planetary signals. Aims. We aim to use a detailed modeling tool to reproduce the effect of active regions on radial velocity measurements, which aids the identification of the key parameters that have an impact on the induced variability. Methods. We analyzed the effect of stellar activity on radial velocities as a function of wavelength by simulating the impact of the properties of spots, shifts induced by convective motions, and rotation. We focused our modeling effort on the active star YZ CMi (GJ 285), which was photometrically and spectroscopically monitored with CARMENES and the Telescopi Joan Oró. Results. We demonstrate that radial velocity curves at different wavelengths yield determinations of key properties of active regions, including spot filling factor, temperature contrast, and location, thus solving the degeneracy between them. Most notably, our model is also sensitive to convective motions. Results indicate a reduced convective shift for M dwarfs when compared to solar-type stars (in agreement with theoretical extrapolations) and points to a small global convective redshift instead of blueshift. Conclusions. Using a novel approach based on simultaneous chromatic radial velocities and light curves, we can set strong constraints on stellar activity, including an elusive parameter such as the net convective motion effect.

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