论文标题
复发太阳能颗粒通量增强,在地球和火星附近观察到
Recurrent Solar Energetic Particle Flux Enhancements Observed near Earth and Mars
论文作者
论文摘要
2016年8月1日至11月15日的周期为特征,其特征是在地球层中存在旋转相互作用区域(CIR)和一些弱冠状质量弹出(CME)。在这项研究中,我们显示了在此期间在地球(1 AU)和火星(1.43-1.38 au)附近观察到的反复的能量电子和质子增强。地球附近的观察结果使用了Ace,Soho和SDO的仪器的数据,而火星附近的人则是由Sep,Swia和Mag Instruments登上Maven上的。在此期间,在地球和火星附近观察到的能量电子通量在四个太阳旋转上显示出显着的周期性增强,重度周期性约为27天,约为13天。 MARSI/MEX观察到与这些太阳能电子增强相关的MARSIS/MEX观察到MARS处雷达信号的周期性雷达停电/弱化。在此期间,弱的CME和高速流(HSS)相关星际冲击可以与CIR相互作用,并在1.43-1.38 AU附近增强能量质子通量,因此,质子通量的27天周期性在1.43-1.38 au处显着下降。这些事件还会引起对火星顶部电离层的意外影响,例如LPW和NGIMS在船上Maven观察到的顶部电离层耗竭和压缩。这些观察结果是独一无二的,这不仅是因为在两个有利位置看到的电子增强功能的反复性质,还因为它们揭示了弱的CME和行星际冲击对火星电离层的意外影响,这为CME-HSS相互作用对火星血浆环境的影响提供了新的见解。
August 1 to November 15, 2016 period was characterized by the presence of Corotating Interaction Regions (CIRs) and a few weak Coronal Mass Ejections (CMEs) in the heliosphere. In this study we show recurrent energetic electron and proton enhancements observed near Earth (1 AU) and Mars (1.43-1.38 AU) during this period. The observations near Earth are using data from instruments aboard ACE, SOHO, and SDO whereas those near Mars are by the SEP, SWIA, and MAG instruments aboard MAVEN. During this period, the energetic electron fluxes observed near Earth and Mars showed prominent periodic enhancements over four solar rotations, with major periodicities of ~27 days and ~13 days. Periodic radar blackout/weakening of radar signals at Mars are observed by MARSIS/MEX, associated with these solar energetic electron enhancements. During this period, a weak CME and a High Speed Stream (HSS)-related interplanetary shock could interact with the CIR and enhance energetic proton fluxes near 1.43-1.38 AU, and as a result, ~27 day periodicity in proton fluxes is significantly diminished at 1.43-1.38 AU. These events also cause unexpected impact on the Martian topside ionosphere, such as topside ionospheric depletion and compression observed by LPW and NGIMS onboard MAVEN. These observations are unique not only because of the recurring nature of electron enhancements seen at two vantage points, but also because they reveal unexpected impact of the weak CME and interplanetary shock on the Martian ionosphere, which provide new insight into the impact of CME-HSS interactions on Martian plasma environment.