论文标题

使用EUHFORIA和IPATH模型对2020年11月29日的太阳能粒子事件进行建模

Modelling the 2020 November 29 solar energetic particle event using the EUHFORIA and the iPATH model

论文作者

Ding, Zheyi, Wijsen, Nicolas, Li, Gang, Poedts, Stefaan

论文摘要

我们介绍了将欧洲地球式前堡信息资产(EUHFORIA)耦合的实施以及在Heliosphere(IPATH)模型中改进的粒子加速和运输,并模拟了2020年11月29日的广泛太阳能粒子(SEP)事件的广泛太阳能粒子(SEP)事件。 (立体声)-a,太阳能和地球观测站(SOHO)和太阳轨道(SOHO)。我们专注于冲击加速度史对不同SEP时间强度曲线的影响,并研究此广泛的SEP事件起源的根本原因。检查了此事件期间电击参数和粒子通量的时间演变。我们发现,采用逼真的太阳风背景可以显着影响冲击的扩展,从而影响冲击参数。 PSP处具有高能风暴粒子事件的时间强度曲线是通过模拟重现的。此外,质子的模拟和观察到的时间强度谱显示在STA时显示出相似的两相增强。这些结果表明,使用逼真的太阳风对冲击进行建模对于确定SEP事件的特征至关重要。地球建模的时间强度曲线的衰减阶段与观测非常吻合,表明在广泛的SEP事件中垂直扩散的重要性。考虑到连接到SOLO的可能的大曲线磁场线,建模的时间强度曲线与观察结果非常吻合。我们建议,在此事件中,由于溪流相互作用区域引起的很大变形的磁场线可能是理解单独观察到的SEP的关键因素。

We present the implementation of coupling the EUropean Heliospheric FORcasting Information Asset (EUHFORIA) and the improved Particle Acceleration and Transport in the Heliosphere (iPATH) model and simulate the widespread solar energetic particle (SEP) event of 2020 November 29. We compare the simulated time intensity profiles with measurements at Parker Solar Probe (PSP), the Solar Terrestrial Relations Observatory (STEREO)-A, SOlar and Heliospheric Observatory (SOHO) and Solar Orbiter (SolO). We focus on the influence of the history of shock acceleration on the varying SEP time intensity profiles and investigate the underlying causes in the origin of this widespread SEP event. The temporal evolution of shock parameters and particle fluxes during this event are examined. We find that adopting a realistic solar wind background can significantly impact the expansion of the shock and consequently the shock parameters. Time intensity profiles with an energetic storm particle event at PSP are well reproduced from the simulation. In addition, the simulated and observed time intensity profiles of protons show a similar two-phase enhancement at STA. These results illustrate that modelling a shock using a realistic solar wind is crucial in determining the characteristics of SEP events. The decay phase of the modelled time intensity profiles at Earth agrees well with observations, indicating the importance of perpendicular diffusion in widespread SEP events. Taking into account the possible large curved magnetic field line connecting to SolO, the modelled time intensity profiles show good agreement with the observation. We suggest that the largely distorted magnetic field lines due to a stream interaction region may be a key factor in understanding the observed SEPs at SolO in this event.

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