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一颗大质量演化恒星表面的一个月对流时间尺度。

One month convection timescale on the surface of a giant evolved star.

机构信息

Department of Space, Earth and Environment, Chalmers University of Technology, Gothenburg, Sweden.

出版信息

Nature. 2024 Sep;633(8029):323-326. doi: 10.1038/s41586-024-07836-9. Epub 2024 Sep 11.

Abstract

The transport of energy through convection is important during many stages of stellar evolution, and is best studied in our Sun or giant evolved stars. Features that are attributed to convection are found on the surface of massive red supergiant stars. Also for lower-mass evolved stars, indications of convection are found, but convective timescales and sizes remain poorly constrained. Models indicate that convective motions are crucial to produce strong winds that return the products of stellar nucleosynthesis into the interstellar medium. Here we report a series of reconstructed interferometric images of the surface of the evolved giant star R Doradus. The images reveal a stellar disk with prominent small-scale features that provide the structure and motions of convection on the stellar surface. We find that the dominant structure size of the features on the stellar disk is 0.72 ± 0.05 astronomical units. We measure the velocity of the surface motions to vary between -18 and +20 km s, which means that the convective timescale is approximately one month. This indicates a possible difference between the convection properties of low-mass and high-mass evolved stars.

摘要

能量通过对流的传输在恒星演化的许多阶段都很重要,在我们的太阳或巨型演化恒星中研究得最好。在大质量红超巨星的表面发现了归因于对流的特征。对于较低质量的演化恒星,也发现了对流的迹象,但对流的时间尺度和大小仍然没有得到很好的限制。模型表明,对流运动对于产生强烈的风至关重要,这些风将恒星核合成的产物返回星际介质。在这里,我们报告了一系列演化巨星 R Doradus 表面的重建干涉图像。这些图像显示了一个带有明显小尺度特征的恒星盘,这些特征提供了恒星表面对流的结构和运动。我们发现恒星盘上特征的主导结构尺寸为 0.72 ± 0.05 天文单位。我们测量到表面运动的速度在-18 和+20 km s 之间变化,这意味着对流的时间尺度大约为一个月。这表明低质量和高质量演化恒星的对流性质可能存在差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a377/11390477/f51bcf9e340d/41586_2024_7836_Fig1_HTML.jpg

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