论文标题

部分可观测时空混沌系统的无模型预测

Solar energetic electron events measured by MESSENGER and Solar Orbiter. Peak intensity and energy spectrum radial dependences: statistical analysis

论文作者

Rodríguez-García, L., Gómez-Herrero, R., Dresing, N., Lario, D., Zouganelis, I., Balmaceda, L. A., Kouloumvakos, A., Fedeli, A., Lara, F. Espinosa, Cernuda, I., Ho, G. C., Wimmer-Schweingruber, R. F., Rodríguez-Pacheco, J.

论文摘要

上下文/目的:我们介绍了通过Messenger任务和电子峰强度和峰强度能谱的61个太阳能电子(参见)事件的列表。该分析包括从2010年到2015年的期间,当时Messenger HeliePentric距离在0.31和0.47 au之间变化。我们还显示了较短的12个列表的径向依赖性,请参见Spacecraft在1 Au附近和太阳能轨道在其第一个关闭近光周围0.32 au的第一个关闭近皮周围测量的事件。 结果:由于板信使上粒子仪器的背景强度升高,该任务衡量的事件必然很大且强烈。他们中的大多数伴随着CME驱动的冲击,在地增强气质上广泛,并显示相对论($ \ sim $ 1 MEV)电子强度增强。通过太阳孔孔的数据结果支持的大型See事件的分析得出的两个主要结论是:(1)电子峰值强度在$ \ sim $ 0.3 au和$ \ sim $ \ sim $ 1 au之间的径向依赖性存在很大差异,但是降低了径向偏移的峰值距离,但降低了radial的峰值。平均而言,在不确定性中,我们发现径向依赖性与$ r^{ - 3} $一致。 (2)在能源范围内发现的电子光谱指数在Messenger中近200 keV($δ$ 200)接近0.3 au的后脱落人群中,在20个(18)事件中的19个事件中,有$ \ sim $ \ sim $ 20%($ \ sim $ 10%)在与抗抗抗抗抗阳性的传播光束相比($ \ sim $ 10%)的情况下更难。

Context/Aims: We present a list of 61 solar energetic electron (SEE) events measured by the MESSENGER mission and the radial dependences of the electron peak intensity and the peak-intensity energy spectrum. The analysis comprises the period from 2010 to 2015, when MESSENGER heliocentric distance varied between 0.31 and 0.47 au. We also show the radial dependencies for a shorter list of 12 SEE events measured in February and March 2022 by spacecraft near 1 au and by Solar Orbiter around its first close perihelion at 0.32 au. Results: Due to the elevated background intensity level of the particle instrument on board MESSENGER, the SEE events measured by this mission are necessarily large and intense; most of them accompanied by a CME-driven shock, being widespread in heliolongitude, and displaying relativistic ($\sim$1 MeV) electron intensity enhancements. The two main conclusions derived from the analysis of the large SEE events measured by MESSENGER, which are generally supported by Solar Orbiter's data results, are: (1) There is a wide variability in the radial dependence of the electron peak intensity between $\sim$0.3 au and $\sim$1 au, but the peak intensities of the energetic electrons decrease with radial distance from the Sun in 27 out of 28 events. On average and within the uncertainties, we find a radial dependence consistent with $R^{-3}$. (2) The electron spectral index found in the energy range around 200 keV ($δ$200) of the backward-scattered population near 0.3 au measured by MESSENGER is harder in 19 out of 20 (15 out of 18) events by a median factor of $\sim$20% ($\sim$10%) when comparing to the anti-sunward propagating beam (backward-scattered population) near 1 au.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源