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Chorus wave generation near the dawnside magnetopause due to drift shell splitting of substorm-injected electrons

机译:合唱波代dawnside附近磁层由于漂移壳分裂substorm-injected电子

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We study the relationship between the electron injection and the chorus waves during a substorm event on 23 March 2007. The chorus waves were detected at high geomagnetic latitude (~70°S) Antarctic observatories in the range of 0600-0900 h in magnetic local time (MLT). Electrons drifting from the injection event were measured by two LANL spacecraft at 0300 and 0900 MLT. The mapping of auroral brightening areas to the magnetic equator shows that the injection occurred in an MLT range of 2200-2400. This estimate is consistent with observations by the THEMIS A, B, and D spacecraft (which were located at 2100 MLT and did not observe electron injections). Our backward model tracing from the magnetic equator near the dawnside magnetopause (which magnetically connects to the Antarctic observatories) also supports the deduced injection region. Since chorus waves are believed to be generated through the electron cyclotron instability by an anisotropic temperature distribution, we examine, by performing forward model tracing, whether the electrons injected during this substorm form a pancake-like pitch angle distribution when they arrive near the dawn-side magnetopause. We find that the onset time of the modeled pitch angle anisotropy is consistent with that of the observed chorus waves. We conclude that the development of the anisotropy is due to particle drift shell splitting.
机译:我们研究电子之间的关系注入和合唱波亚暴2007年3月23日活动。发现在高地磁纬度(~ 70°S)南极天文台在0600 - 0900当地时间h磁(MLT)。漂移喷射事件的测量由两个LANL飞船在0300年和0900年MLT。映射的极光照明领域磁赤道表明注入发生在一个传输范围的2200 - 2400。估计的观测结果是一致的忒弥斯A、B和D航天器(所在地在2100匝的,没有观察到电子注射)。磁赤道附近dawnside磁层(磁性连接到南极天文台)也支持推导注射区域。生成电子回旋由各向异性温度不稳定分布,我们检查,通过执行模型跟踪,无论是电子注入在这个亚暴形成一个薄饼样当他们到附近的角分布dawn-side磁层。建模的螺旋角的各向异性符合观测的合唱波。各向异性是由于粒子漂移壳分裂。

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