论文标题

Proxima Centauri的大规模磁场接近活动最大

The large-scale magnetic field of Proxima Centauri near activity maximum

论文作者

Klein, Baptiste, Donati, Jean-François, Hébrard, Élodie M., Zaire, Bonnie, Folsom, Colin P., Morin, Julien, Delfosse, Xavier, Bonfils, Xavier

论文摘要

我们报告了在缓慢旋转的全面感染的M矮人中心的表面上检测大规模磁场。从2017年4月至2017年7月收集的十个圆极化光谱与Harps-POL光谱仪显示出旋转调制的Zeeman签名,表明恒星旋转期为$ 89.8 \ pm 4.0 $ d。使用Zeeman-Doppler成像,我们将圆形极化光谱倒入大规模磁场的表面分布。我们发现,Proxima CEN拥有一个典型强度200 g的大规模磁场,其拓扑主要是poloidal和中等轴对称的,特别是在51 $^{\ circ} $上倾斜的135 g的偶极组件。大规模的磁通量大约是从Zeeman宽阔线的宽度测得的通量大约3倍,这表明底层发电机在最大的空间尺度上产生磁场有效地产生磁场。我们的观察结果发生在$ \ sim $ 1 $ 1年之后,在报告的7年活动周期的最大值后,这为首次长期研究为大规模磁场如何随着完全感染的非常低的质量恒星而演变而开放。最后,我们发现Proxima Cen的可居住区行星Proxima-B可能在Alfvèn表面外绕,那里没有直接磁星形行星相互作用发生。

We report the detection of a large-scale magnetic field at the surface of the slowly-rotating fully-convective M dwarf Proxima Centauri. Ten circular polarization spectra, collected from April to July 2017 with the HARPS-Pol spectropolarimeter, exhibit rotationally-modulated Zeeman signatures suggesting a stellar rotation period of $89.8 \pm 4.0$ d. Using Zeeman-Doppler Imaging, we invert the circular polarization spectra into a surface distribution of the large-scale magnetic field. We find that Proxima Cen hosts a large-scale magnetic field of typical strength 200 G, whose topology is mainly poloidal, and moderately axisymmetric, featuring, in particular, a dipole component of 135 G tilted at 51$^{\circ}$ to the rotation axis. The large-scale magnetic flux is roughly 3 times smaller than the flux measured from the Zeeman broadening of unpolarized lines, which suggests that the underlying dynamo is efficient at generating a magnetic field at the largest spatial scales. Our observations occur $\sim$1 yr after the maximum of the reported 7 yr-activity cycle of Proxima Cen, which opens the door for the first long-term study of how the large-scale field evolves with the magnetic cycle in a fully-convective very-low-mass star. Finally, we find that Proxima Cen's habitable zone planet, Proxima-b, is likely orbiting outside the Alfvèn surface, where no direct magnetic star-planet interactions occur.

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