论文标题

Betelgeuse光球中对流细胞的三维成像

Three-dimensional imaging of convective cells in the photosphere of Betelgeuse

论文作者

Ariste, A. López, Georgiev, S., Mathias, Ph., Lèbre, A., Wavasseur, M., Josselin, E., Konstantinova-Antova, R., Roudier, Th.

论文摘要

理解红色超级巨人的对流以及引发这些进化恒星大规模损失的机制是大多数观察到槟榔及其内心环境的总体目标。 Betelgeuse光谱原子线的线性光谱极化揭示了有关其大气中亮度的三维(3D)分布的信息。我们对等离子体及其速度的分布进行建模,并使用反转算法符合观察到的线性极化。我们获得了Betelgeuse光球的第一个3D图像。在使用的近似值的范围内,我们恢复垂直对流流并测量光球不同高度处上升等离子体的速度。在某些情况下,我们发现该速度持续持续,高度表明作用在等离子体上的重力以外的其他力并抵消了它。在某些情况下,这些力足以使血浆上升在60 \,\ kms至高度,在该高度与逃逸速度相当。 Betelgeuse的光球中存在力,使等离子体达到逃逸速度接近的速度。这些机制可能足以触发质量损失并维持观察到的这些进化恒星的巨大风。

Understanding convection in red supergiants and the mechanisms that trigger the mass loss from these evolved stars are the general goals of most observations of Betelgeuse and its inner circumstellar environment. Linear spectropolarimetry of the atomic lines of the spectrum of Betelgeuse reveals information about the three-dimensional (3D) distribution of brightness in its atmosphere. We model the distribution of plasma and its velocities and use inversion algorithms to fit the observed linear polarization. We obtain the first 3D images of the photosphere of Betelgeuse. Within the limits of the used approximations, we recover vertical convective flows and measure the velocity of the rising plasma at different heights in the photosphere. In several cases, we find this velocity to be constant with height, indicating the presence of forces other than gravity acting on the plasma and counteracting it. In some cases, these forces are sufficient to maintain plasma rising at 60\,\kms to heights where this velocity is comparable to the escape velocity. Forces are present in the photosphere of Betelgeuse that allow plasma to reach velocities close to the escape velocity. These mechanisms may suffice to trigger mass loss and sustain the observed large stellar winds of these evolved stars.

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