Dynamics of Energetic Electrons in Microinjection.
编号:3360 访问权限:仅限参会人 更新:2024-04-13 13:57:55 浏览:788次 张贴报告

报告开始:2024年05月18日 08:16(Asia/Shanghai)

报告时间:1min

所在会场:[SP] 张贴报告专场 [sp10] 主题10、行星科学与空间物理

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摘要
The microinjection is a phenomenon observed by spacecraft in the magnetosphere, exhibiting a repetitive dispersive electron signature similar to classical substorm-associated injections. Early studies attribute the formation mechanism to the electron source. For example, Sarafopoulos (2002, GRL) postulated the existence of a sharp and meandering injection boundary near the geosynchronous orbit and this boundary could supply energetic electrons, causing pulsating injections into the earthward region. In a recent study using MMS data, Luo et al. (2022, GRL) suggested that the drift resonance between electrons and ULF toroidal waves may serve as a potential driving mechanism. Building on the drift resonance theory, they provide an explanation for the phase differences observed in the flux during microinjection events. In this study, we utilize an analytical model for ULF Toroidal mode waves to replicate the observed magnetic and electric fields. Subsequently, using the reproduced field model and a test particle simulation method, we investigate the dynamics of electrons during the microinjection event. The simulated electron flux exhibits characteristics similar to the observations, suggesting the validity of the drift resonance theory in explaining microinjection phenomena.
关键词
Microinjection,Wave-particle interaction,ULF Toroidal mode
报告人
LiuJi
博士研究生 阿尔伯塔大学

稿件作者
LiuJi 阿尔伯塔大学
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    05月17日

    2024

    05月20日

    2024

  • 03月31日 2024

    初稿截稿日期

  • 03月31日 2024

    报告提交截止日期

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青年地学论坛理事会
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厦门大学近海海洋环境科学国家重点实验室
中国科学院城市环境研究所
自然资源部第三海洋研究所
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