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Observations of whistler mode waves with nonlinear parallel electric fields near the dayside magnetic reconnection separatrix by the Magnetospheric Multiscale mission

机译:利用磁层多尺度任务观测傍晚磁重联分界线附近非线性平行电场的哨声模式波

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摘要

We show observations from the Magnetospheric Multiscale (MMS) mission of whistler mode waves in the Earth's low-latitude boundary layer (LLBL) during a magnetic reconnection event. The waves propagated obliquely to the magnetic field toward the X line and were confined to the edge of a southward jet in the LLBL. Bipolar parallel electric fields interpreted as electrostatic solitary waves (ESW) are observed intermittently and appear to be in phase with the parallel component of the whistler oscillations. The polarity of the ESWs suggests that if they propagate with the waves, they are electron enhancements as opposed to electron holes. The reduced electron distribution shows a shoulder in the distribution for parallel velocities between 17,000 and 22,000 km/s, which persisted during the interval when ESWs were observed, and is near the phase velocity of the whistlers. This shoulder can drive Langmuir waves, which were observed in the high-frequency parallel electric field data.
机译:我们从磁低层边界层(LLBL)的磁重联事件期间,从磁层多尺度(MMS)任务中观察到的惠斯勒模式波的观测结果。波向X线倾斜地传播到磁场,并被限制在LLBL中向南喷射的边缘。间歇地观察到被解释为静电孤波(ESW)的双极平行电场,并且看起来与惠斯勒振荡的平行分量同相。 ESW的极性表明,如果它们随波传播,则它们是电子增强而不是电子空穴。减小的电子分布在17,000至22,000 km / s之间的平行速度分布中显示了一个肩部,该肩部在观察到ESW的时间间隔内持续存在,并且接近吹口哨的相速度。该肩部可以驱动Langmuir波,这在高频平行电场数据中可以观察到。

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