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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Extremely intense ELFmagnetosonicwaves: A survey of polar observations
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Extremely intense ELFmagnetosonicwaves: A survey of polar observations

机译:极其强烈的ELFmagnetosonicwaves:一项调查北极熊的观察

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A Polar magnetosonic wave (MSW) study was conducted using 1 year of 1996–1997 data (during solar minimum). Waves at and inside the plasmasphere were detected at all local times with a slight preference for occurrence in the midnight-postmidnight sector. Wave occurrence (and intensities) peaked within~±5° of the magnetic equator, with half maxima at ~±10°. However, MSWs were also detected as far from the equator as +20° and 60° MLAT but with lower intensities. An extreme MSW intensity event of amplitude B_w=~± 1 nT and E_w = ~± 25 mV/m was detected. This event occurred near local midnight, at the plasmapause, at the magnetic equator, during an intense substorm event, e.g., a perfect occurrence. These results support the idea of generation by protons injected from the plasma sheet into the midnight sector magnetosphere by substorm electric fields. MSWs were also detected near noon (1259 MLT) during relative geomagnetic quiet (low AE). A possible generation mechanism is a recovering/expanding plasmasphere engulfing preexisting energetic ions, in turn leading to ion instability. The wave magnetic field components are aligned along the ambient magnetic field direction, with the wave electric components orthogonal, indicating linear wave polarization. The MSW amplitudes decreased at locations further from the magnetic equator, while transverse whistler mode wave amplitudes (hiss) increased. We argue that intense MSWs are always present somewhere in the magnetosphere during strong substorm/convection events. We thus suggest that modelers use dynamic particle tracing codes and the maximum (rather than average) wave amplitudes to simulate wave-particle interactions.
机译:一个极性磁声波(垃圾)的研究进行了使用1年期间(1996 - 1997年的数据太阳活动极小期)。在所有地方的时间发现了等离子体层轻微的偏好发生midnight-postmidnight部门。(强度)~±5°内达到顶峰磁赤道,最大值一半~±10°。”然而,垃圾也被发现的赤道+ 20°和60°MLAT但较低强度。振幅B_w = ~±1 nT和E_w = ~±25 mV / m检测到。午夜,在磁等离子体层顶,赤道,在一场激烈的亚暴事件,例如,一个完美的发生。一代的质子注入的想法等离子体片到午夜磁层亚暴电场。也(1259 MLT)中午在附近检测到吗相对地磁安静(低AE)。产生机制是一个恢复/扩展等离子体层席卷既存活力离子,进而导致离子不稳定。波磁场组件是一致的周围的磁场方向,波正交电气组件,指示线性波极化。减少在位置远离磁场赤道,而横向惠斯勒波模式振幅(嘘)增加。强烈”的某个地方是永远存在的磁气圈在强大的亚暴/对流事件。粒子跟踪代码和最大(相当比平均)波振幅来模拟波粒相互作用。

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