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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Electromagnetic cyclotron waves in the dayside subsolar outer magnetosphere generated by enhanced solar wind pressure: EMIC wave coherency
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Electromagnetic cyclotron waves in the dayside subsolar outer magnetosphere generated by enhanced solar wind pressure: EMIC wave coherency

机译:电磁回旋波的光面现世的外所产生的磁气圈增强的太阳风压力:波位的一致性

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Electromagnetic ion (proton) cyclotron (EMIC) waves and whistler mode chorus are simultaneously detected in the Earth's dayside subsolar outer magnetosphere. The observations were made near the magnetic equator 3.1° –1.5° magnetic latitude at 1300 magnetic local time from L = 9.9 to 7.0. It is hypothesized that the solar wind external pressure caused preexisting energetic 10–100 keV protons and electrons to be energized in the T_⊥ component by betatron acceleration and the resultant temperature anisotropy (T_⊥ >T_‖) formed led to the simultaneous generation of both EMIC (ion) and chorus (electron) waves. The EMIC waves had maximum wave amplitudes of ~6 nT in a ~60 nT ambient field B_0. The observed EMIC wave amplitudes were about ~10 times higher than the usually observed chorus amplitudes (~0.1–0.5 nT). The EMIC waves are found to be coherent to quasi-coherent in nature. Calculations of relativistic ~1–2 MeV electron pitch angle transport are made using the measured wave amplitudes and wave packet lengths.Wave coherency was assumed. Calculations show that in a ~25–50ms interaction with an EMIC wave packet, relativistic electron can be transported ~27° in pitch. Assuming dipole magnetic field lines for a L = 9 case, the cyclotron resonant interaction is terminated ~±20° away from the magnetic equator due to lack of resonance at higher latitudes. It is concluded that relativistic electron anomalous cyclotron resonant interactions with coherent EMIC waves near the equatorial plane is an excellent loss mechanism for these particles. It is also shown that E >1 MeV electrons cyclotron resonating with coherent chorus is an unlikely mechanism for relativistic microbursts. Temporal structures of ~30 keV precipitating protons will be ~2–3 s which will be measurable at the top of the ionosphere.
机译:电磁离子(质子)回旋加速器(位)海浪和惠斯勒同时模式合唱发现在地球的光面现世的外层磁气圈。磁赤道3.1°-1.5°磁纬度在当地时间1300年磁从L = 9.9至7.0。这是假设太阳风外部压力既存的精力充沛的10 - 100 keV引起的质子和电子的能量T_⊥识别组件通过电子感应加速器加速和合成温度各向异性(T_⊥识别> T_为识别)形成了同步生成的位的(离子)和合唱(电子)波。海浪的波最大振幅~ 6元~ 60 B_0 nT环境领域。振幅是~ 10倍通常观察到合唱振幅(-0.5 ~ 0.1元)。位的波被发现是一致的quasi-coherent。相对论~ 1 - 2兆电子伏电子螺旋角运输是使用测量波振幅和波包的长度。是假定。与一位的波包,相对论性电子可以运送~ 27°音高。L = 9例中,回旋共振相互作用终止~±20°远离磁赤道由于缺乏共鸣在高纬度地区。得出相对论电子异常回旋共振相互作用一致位的赤道平面附近是一个优秀的损失这些粒子的机制。也表明,E > 1兆电子伏电子回旋加速器连贯的合唱是一个不太可能的共鸣相对论微爆发的机制。结构~ 30 keV沉淀质子~ 2 - 3 s将顶部的可衡量的电离层。

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