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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Proton Flux Variations During Solar Energetic Particle Events, Minimum and Maximum Solar Activity, and Splitting of the Proton Belt in the South Atlantic Anomaly
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Proton Flux Variations During Solar Energetic Particle Events, Minimum and Maximum Solar Activity, and Splitting of the Proton Belt in the South Atlantic Anomaly

机译:Proton Flux Variations During Solar Energetic Particle Events, Minimum and Maximum Solar Activity, and Splitting of the Proton Belt in the South Atlantic Anomaly

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Abstract The analysis of the proton flux variations observed by the Energetic Particle Telescope (EPT) at energies >9.5 MeV from the launch of PROBA‐V satellite on 7 May 2013 up to October 2022 shows an anti‐correlation between the proton fluxes and the solar phase. At solar minimum, the fluxes are higher at low L corresponding to the northern border of the South Atlantic Anomaly (SAA). This solar cycle modulation of the inner belt is mainly due to losses by increased atmospheric interactions during solar maximum. Strong Solar Energetic Particle (SEP) events, like in January 2014, June 2015, and September 2017, inject energetic protons at high latitudes, but not in the inner belt where protons are trapped at long term at low L. Nevertheless, big geomagnetic storms, including those following SEP a few days after, can cause losses of protons at the outer border of the proton belt, due to magnetic field perturbations. A double peak in the proton belt is observed during long period of measurements only for the EPT channel of 9.5–13 MeV. The narrow gap between the two peaks in the inner belt is located around L = 2. This resembles to a splitting of the proton belt, separating the SAA into two different parts, North and South. The high‐resolution measurements of PROBA‐V/EPT allow the observation of small‐scale structures that brings new elements to the understanding of the different source and loss mechanisms acting on the proton radiation belt at LEO.
机译:抽象的分析质子通量观察高能粒子的变化望远镜(EPT) > 9.5兆电子伏能量推出PROBA V应承担的卫星于2013年5月7日2022年10月展示了一个反之间的相关性质子通量和太阳能的阶段。以低L最低,通量高对应于南方的北部边境大西洋异常(SAA)。调制内部辐射带的主要原因损失由增加大气相互作用在太阳能最大。粒子(SEP)事件,比如2014年1月,六月2015年,2017年9月,注入活力质子在高纬度地区,而不是内部带质子在长期被困的地方低l .然而,大地磁风暴,包括以下9月几天后,会导致损失的质子外边界质子带,由于磁场扰动。在长时间的测量是观察到的只对EPT通道9.5 -13伏。狭窄的内的两座山峰之间的差距带位于L = 2。分裂的质子带,把SAA分开分成两个不同部分,北部和南部。高分辨率的测量PROBA V / EPT允许观察小尺度结构带来了新的元素的理解作用于不同的源和损失机制狮子座的质子辐射带。

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