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Direct evidence for efficient scattering of suprathermal electrons by whistler mode waves in the Martian magnetosphere

查看全文 作  者:Tong [1,2]Li;Si [1,2]Liu;Chang [1]Yang;FuLiang [1,2]Xiao;HongMing [3]Yang;Sai [1]Zhang;ZhongLei [1]Gao;Qian [1]He;QingHua [1]Zhou;QiWu [1]Yang;YiHua [1]He 高影响力作者 机构地区:[1]School of Physics and Electronic Sciences,Changsha University of Science and Technology,Changsha 410114,China;[2]Hunan Provincial Key Laboratory of Flexible Electronic Materials Genome Engineering,Changsha University of Science and Technology,Changsha 410114,China;[3]School of Electrical and Information Engineering,Changsha University of Science and Technology,Changsha 410114,China高影响力机构 出  处:《Earth and Planetary Physics》索引2023年第7卷第6期,共8页高影响力期刊 基  金:the National Natural Science Foundation of China grants 42230209, 42241136, 42374199, 42204171, 42274212;the Natural Science Foundation of Hunan province Grant 2021JJ20010, 2023JJ20038 摘  要:Whistler mode waves are critical emissions in magnetized plasmas that usually influence the electron dynamics in a planetary magnetosphere.In this paper,we present a unique event in the Martian magnetosphere in which enhanced whistler mode waves(~10^(−11) V^(2)/m^(2)/Hz)with frequency of 0.1 f_(ce)-0.5 f_(ce) occurred,based on MAVEN data,exactly corresponding to a significant decrease of suprathermal electron fluxes.The diffusion coefficients are calculated by using the observed electric field wave spectra.The pitch angle diffusion coefficient can approach 10^(−2) s^(−1),which is much larger,by~100 times,than the momentum diffusion coefficient,indicating that pitch angle scattering dominates the whistler-electron resonance process.The current results can successfully explain the dropout of the suprathermal electrons in this event.This study provides direct evidence for whistler-driven electron losses in the Martian magnetosphere. 关 键 词:whistler mode waves diffusion coefficients electron scattering Martian magnetosphere
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