GSTDTAP  > 气候变化
DOI10.1029/2018GL077707
The Impact and Solar Wind Proxy of the 2017 September ICME Event at Mars
Ma, Yingjuan1; Fang, Xiaohua2; Halekas, Jasper S.3; Xu, Shaosui4; Russell, Christopher T.1; Luhmann, Janet G.4; Nagy, Andrew F.5; Toth, Gabor5; Lee, Christina O.4; Dong, Chuanfei6,7; Espley, Jared R.8; McFadden, James P.4; Mitchell, David L.4; Jakosky, Bruce M.2
2018-08-16
发表期刊GEOPHYSICAL RESEARCH LETTERS
ISSN0094-8276
EISSN1944-8007
出版年2018
卷号45期号:15页码:7248-7256
文章类型Article
语种英语
国家USA
英文摘要

We study a large interplanetary coronal mass ejection event impacting Mars in mid-September 2017 numerically. During this time period, MAVEN remained inside the Martian bow shock and therefore could not measure the solar wind directly. We first simulate the event using three steady state cases with estimated solar wind conditions and find that these cases were able to reproduce the general features observed by MAVEN. However, these time-stationary runs cannot capture the response of the system to large variations in the solar wind associated with the event. To address this problem, we derive a solar wind proxy based on MAVEN observations in the sheath region and their comparison with steady state magnetohydrodynamic model results. The derived solar wind proxy is then used to drive a time-dependent magnetohydrodynamic model, and we find that the data-model comparison is greatly improved, especially in the magnetosheath. We are able to reproduce some detailed structures observed by MAVEN during the period, despite the lack of a direct measurement of the solar wind, indicating that the derived solar wind conditions are reliable. Finally, we examine in detail the impact of the event on the Martian system: including variations of the three typical plasma boundaries and the ion loss rates. Our results show that these plasma boundary locations varied drastically during the event, and the total ion loss rate was enhanced by more than an order of magnitude.


Plain Language Summary A large interplanetary coronal mass ejection event impacted on Mars in mid-September 2017. We use a numerical model to study in detail about the effect of the interplanetary coronal mass ejection on the Mars plasma environments. The model results are in good agreement with MAVEN observations, despite the lack of a direct measurement of the solar wind. We also examine in detail variations of typical plasma boundaries and the ion loss rates and found that the plasma boundary locations varied drastically during the event, and the total ion loss rate was enhanced by more than an order of magnitude.


英文关键词ICME Mars MHD
领域气候变化
收录类别SCI-E
WOS记录号WOS:000443129500002
WOS关键词MAGNETIC-FIELD ; EXPRESS ; MHD ; PRESSURE ; MODEL
WOS类目Geosciences, Multidisciplinary
WOS研究方向Geology
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/28505
专题气候变化
作者单位1.UCLA, Dept Earth Planetary & Space Sci, Los Angeles, CA USA;
2.Univ Colorado, Lab Atmospher & Space Phys, Boulder, CO 80309 USA;
3.Univ Iowa, Dept Phys & Astron, Iowa City, IA 52242 USA;
4.Univ Calif Berkeley, Space Sci Lab, Berkeley, CA 94720 USA;
5.Univ Michigan, Dept Atmospher Ocean & Space Sci, Ann Arbor, MI 48109 USA;
6.Princeton Univ, Dept Astrophys Sci, Princeton, NJ 08544 USA;
7.Princeton Univ, Princeton Plasma Phys Lab, POB 451, Princeton, NJ 08543 USA;
8.NASA, Goddard Space Flight Ctr, Greenbelt, MD USA
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Ma, Yingjuan,Fang, Xiaohua,Halekas, Jasper S.,et al. The Impact and Solar Wind Proxy of the 2017 September ICME Event at Mars[J]. GEOPHYSICAL RESEARCH LETTERS,2018,45(15):7248-7256.
APA Ma, Yingjuan.,Fang, Xiaohua.,Halekas, Jasper S..,Xu, Shaosui.,Russell, Christopher T..,...&Jakosky, Bruce M..(2018).The Impact and Solar Wind Proxy of the 2017 September ICME Event at Mars.GEOPHYSICAL RESEARCH LETTERS,45(15),7248-7256.
MLA Ma, Yingjuan,et al."The Impact and Solar Wind Proxy of the 2017 September ICME Event at Mars".GEOPHYSICAL RESEARCH LETTERS 45.15(2018):7248-7256.
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