论文标题

重新访问Proxima Centauri b的太空天气环境

Revisiting the space weather environment of Proxima Centauri b

论文作者

Garraffo, Cecilia, Alvarado-Gómez, Julián D., Cohen, Ofer, Drake, Jeremy J.

论文摘要

绕着低质量恒星绕的近距离行星暴露于强烈的能量光子和粒子辐射以及苛刻的空间天气。我们已经为Proxima Centauri B(Garraffo等,2016b)建模了这种条件,这是我们最近邻近恒星宜居区绕的岩石行星,发现比地球上太阳能风压高三个数量级。当时,没有对Proxima CEN的表面磁场分布的观测值,并且使用了与Proxima相似的恒星的代理来驱动MHD模型。最近,第一个对Proxima CEN的ZDI观察发现(Klein等,2021)。我们使用此地图对Proxima B的空间天气进行了建模,并将其与代理磁力图的结果进行了比较。我们还计算了针对由最先进的发电机模型生成的高分辨率合成磁图的模型。这三种情况下所得的空间天气条件相似,基于ZDI观察到的磁力图和代理之间的模型之间仅发现了很小的差异。我们得出的结论是,基于Rossby数字的代理磁力图处方是有效的,并且在没有直接观察时提供了一种简单的方法来估计出色的磁通量分布。与基于合成磁化图的模型的比较表明,精确的磁图细节对于预测行星的全球空间天气条件并不重要,这加强了早期的结论,即大规模(低阶)场占主导地位,而小型场对环境恒星风的影响不大。

Close-in planets orbiting around low-mass stars are exposed to intense energetic photon and particle radiation and harsh space weather. We have modeled such conditions for Proxima Centauri b (Garraffo et al. 2016b), a rocky planet orbiting in the habitable-zone of our closest neighboring star, finding a stellar wind pressure three orders of magnitude higher than the solar wind pressure on Earth. At that time, no Zeeman-Doppler observations of the surface magnetic field distribution of Proxima Cen were available and a proxy from a star with similar Rossby number to Proxima was used to drive the MHD model. Recently, the first ZDI observation of Proxima Cen became available (Klein et al. 2021). We have modeled Proxima b's space weather using this map and compared it with the results from the proxy magnetogram. We also computed models for a high-resolution synthetic magnetogram for Proxima b generated by a state-of-the-art dynamo model. The resulting space weather conditions for these three scenarios are similar with only small differences found between the models based on the ZDI observed magnetogram and the proxy. We conclude that our proxy magnetogram prescription based on Rossby number is valid, and provides a simple way to estimate stellar magnetic flux distributions when no direct observations are available. Comparison with models based on the synthetic magnetogram show that the exact magnetogram details are not important for predicting global space weather conditions of planets, reinforcing earlier conclusions that the large-scale (low-order) field dominates, and that the small-scale field does not have much influence on the ambient stellar wind.

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