论文标题

部分可观测时空混沌系统的无模型预测

Can we detect coronal mass ejections through asymmetries of Sun-as-a-star extreme-ultraviolet spectral line profiles?

论文作者

Yang, Zihao, Tian, Hui, Bai, Xianyong, Chen, Yajie, Guo, Yang, Zhu, Yingjie, Cheng, Xin, Gao, Yuhang, Xu, Yu, Chen, Hechao, Zhang, Jiale

论文摘要

冠状质量弹出(CME)是太阳系中最大的喷发现象。与巨大的等离子体弹出和能量释放相关,CME对太阳 - 事物环境有重要影响。 CME在地球上的到达时间的准确预测取决于其三维速度的精确测量,可以使用同时的视线线(LOS)和冰平(POS)观测来实现。除了常规冠状动脉和极端紫外线(EUV)成像观察的POS信息外,光谱观察结果还可以揭示CME的物理特性,包括其LOS速度。我们提出,通过Sun-As-A-Star光谱仪测量的光谱线不对称可以用于常规检测CMES和在早期传播阶段的LOS速度的估计。这种观察结果还可以为在其他太阳能恒星上检测CME的检测提供重要的线索。但是,很少有研究集中在我们是否可以通过Sun-As-A-Star光谱观测值来检测CME信号并准确诊断CME特性。在这项工作中,我们构建了一个几何CME模型,并在CMES期间为全盘集成EUV线轮廓提供了分析表达式。对于不同的CME属性和仪器配置,合成了完整的磁盘集成线轮廓。我们进一步评估了CME从合成线曲线中的可检测性和诊断潜力。我们的研究对通过EUV线不对称的CME检测进行了对Sun-As-A-Star光谱仪的未来设计的重要限制。

Coronal mass ejections (CMEs) are the largest-scale eruptive phenomena in the solar system. Associated with enormous plasma ejections and energy release, CMEs have an important impact on the solar-terrestrial environment. Accurate predictions of the arrival times of CMEs at the Earth depend on the precise measurements on their three-dimensional velocities, which can be achieved using simultaneous line-of-sight (LOS) and plane-of-sky (POS) observations. Besides the POS information from routine coronagraph and extreme ultraviolet (EUV) imaging observations, spectroscopic observations could unveil the physical properties of CMEs including their LOS velocities. We propose that spectral line asymmetries measured by Sun-as-a-star spectrographs can be used for routine detections of CMEs and estimations of their LOS velocities during their early propagation phases. Such observations can also provide important clues for the detection of CMEs on other solar-like stars. However, few studies have concentrated on whether we can detect CME signals and accurately diagnose CME properties through Sun-as-a-star spectral observations. In this work, we constructed a geometric CME model and derived the analytical expressions for full-disk integrated EUV line profiles during CMEs. For different CME properties and instrumental configurations, full disk-integrated line profiles were synthesized. We further evaluated the detectability and diagnostic potential of CMEs from the synthetic line profiles. Our investigations provide important constraints on the future design of Sun-as-a-star spectrographs for CME detections through EUV line asymmetries.

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