论文标题

2021年10月28日的太阳能周期25的第一场地面增强

The First Ground Level Enhancement of Solar Cycle 25 on 28 October 2021

论文作者

Papaioannou, A., Kouloumvakos, A., Mishev, A., Vainio, R., Usoskin, I., Herbst, K., Rouillard, A. P., Anastasiadis, A., Gieseler, J., Wimmer-Schweingruber, R., Kühl, P.

论文摘要

目标。 2021年10月28日,由中子监测器(NMS)在地面上的中子监测器(NMS)和粒子探测器在近地空间中的板上航天器上检测到了太阳周期25(SC25)的第一个相对论太阳能质子事件(SC25)。这是当前周期的第一个地面增强(GLE)。基于原位和遥感测量值研究了NM响应的详细重建以及生成这些颗粒的太阳喷发的鉴定。方法。从几个MEV到$ \ sim $ 500 MEV的原位质子观察结果与柔软的X射线(SXRS)中的太阳耀斑相结合,冠状质量弹出(CME),无线电爆发和极端紫外线(EUV)(EUV)观察值,以识别Gle的阳性。进行了定时分析,并概述了与太阳能源的关系。结果。 GLE73达到了$ \ sim $ 2.4 GV的最大粒子刚度,并且与III型,II型,IV型无线电爆发和EUV波的相关。观察到NMS记录的多种时间概况。这表明事件的各向异性性质。 E $> $ 10 MEV的峰值通量仅为$ \ sim $ 30 PFU,并且在此水平上保持了几天。 $ \ geq $ 1 GV粒子的发行时间为$ \ sim $ 15:40 UT。 GLE73在非常高的能量($γ$ $ \ sim $ 5.5)的情况下具有中等硬的刚度频谱。进行了GLE73与以前具有相似太阳驱动器的先前GLE的比较

Aims. The first relativistic solar proton event of solar cycle 25 (SC25) was detected on 28 October 2021 by neutron monitors (NMs) on the ground and particle detectors onboard spacecraft in the near-Earth space. This is the first ground level enhancement (GLE) of the current cycle. A detailed reconstruction of the NM response together with the identification of the solar eruption that generated these particles is investigated based on in-situ and remote-sensing measurements. Methods. In-situ proton observations from a few MeV to $\sim$500 MeV were combined with the detection of a solar flare in soft X-rays (SXRs), a coronal mass ejection (CME), radio bursts and extreme ultraviolet (EUV) observations to identify the solar origin of the GLE. Timing analysis was performed and a relation to the solar sources was outlined. Results. GLE73 reached a maximum particle rigidity of $\sim$2.4 GV and is associated with type III, type II, type IV radio bursts and an EUV wave. A diversity of time profiles recorded by NMs was observed. This points to an anisotropic nature of the event. The peak flux at E$>$10 MeV was only $\sim$30 pfu and remained at this level for several days. The release time of $\geq$1 GV particles was found to be $\sim$15:40 UT. GLE73 had a moderately hard rigidity spectrum at very high energies ($γ$ $\sim$5.5). Comparison of GLE73 to previous GLEs with similar solar drivers is performed

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