论文标题

基于太阳风 - 太阳紫外线关系

The exoplanetary magnetosphere extension in Sun-like stars based on the solar wind -- solar UV relation

论文作者

Reda, Raffaele, Giovannelli, Luca, Alberti, Tommaso, Berrilli, Francesco, Bertello, Luca, Del Moro, Dario, Di Mauro, Maria Pia, Giobbi, Piermarco, Penza, Valentina

论文摘要

地球的磁层延伸由太阳能活动水平控制。了解太阳系中的这种关系对于预测阳光样恒星附近的超球星磁层的状况很重要。我们使用色层代理,Ca II K指数和太阳能Wind Omni参数的测量值将太阳能活动变化在十年时间尺度上连接到太阳能风能。 1965 - 2021年时间间隔内的数据跨度几乎完全涵盖了最后5个太阳能周期。使用互相关和相互信息分析,发现相对于Ca II K指数的太阳风速的3。2年滞后。类似地,考虑到动态压力,发现了一个3。6年的滞后。发现太阳风动力压力与太阳能紫外线发射之间的相关性,并用于导致地球的磁笼僵局。此外,使用色球代理(例如Ca II K指数)的优势通过将恒星变异性与恒星风能联系起来,开辟了扩展对太阳与太阳恒星发现的关系的可能性。该模型被应用于案例研究的样品,在该样品中,我们假设在1 AU处存在类似地球的系外行星。最后,我们将结果与以前对同一组类似太阳恒星的磁层扩展的估计值进行了比较。

The Earth's magnetosphere extension is controlled by the solar activity level via solar wind properties. Understanding such a relation in the Solar System is important for predicting also the condition of exoplanetary magnetospheres near Sun-like stars. We use measurements of a chromospheric proxy, the Ca II K index, and solar wind OMNI parameters to connect the solar activity variations, on the decennial time scales, to the solar wind properties. The data span over the time interval 1965-2021, which almost entirely covers the last 5 solar cycles. Using both cross-correlation and mutual information analysis, a 3.2-year lag of the solar wind speed with respect to the Ca II K index is found. Analogously, a 3.6-year lag is found once considering the dynamic pressure. A correlation between the solar wind dynamic pressure and the solar UV emission is found and used to derive the Earth's magnetopause standoff distance. Moreover, the advantage of using a chromospheric proxy, such as the Ca II K index, opens the possibility to extend the relation found for the Sun to Sun-like stars, by linking stellar variability to stellar wind properties. The model is applied to a sample of Sun-like stars as a case study, where we assume the presence of an Earth-like exoplanet at 1 AU. Finally, we compare our results with previous estimates of the magnetosphere extension for the same set of Sun-like stars.

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