首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >THEMIS observations and modeling of multiple ion species and EMIC waves: Implications for a vanishing He ~+ stop band
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THEMIS observations and modeling of multiple ion species and EMIC waves: Implications for a vanishing He ~+ stop band

机译:THEMIS对多种离子种类和EMIC波的观察和建模:对He〜+阻带消失的影响

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摘要

Observations of left-hand polarized electro-magnetic ion cyclotron (EMIC) waves with significant wave power across f _(He+)are presented. Concurrent field and particle measurements reveal pitch angle scattering of thermal ions during the interval of maximum wave power. The observations suggest the presence of multiple cold ion species(H ~+, He ~+)at this time, below the sum of spacecraft potential and minimum energy of the ion instrument(i.e., <~20 eV). Fortuitously, immediately following the most intense wave activity, the ambient plasma flow velocity became sufficiently large such that cold ions can be accelerated into the energy range of the particle instrument. Thus, two low energy ion components are revealed in the particle measurements at energies consistent with cold protons and He ~+. Maxwellian fits provide approximations of these cold ion species component densities and temperatures. The linear dispersion relation of parallel propagating EMIC waves for the observed conditions shows a vanishing cold plasma He ~+ stop band, consistent with the wave measurements during this interval. These results provide the first observational evidence of the importance of the cool ion species temperature/density in controlling linear wave growth through the heavy ion stop bands in warm plasma theory.
机译:提出了在f _(He +)上具有显着波功率的左极化电磁离子回旋加速器(EMIC)波的观察结果。并发场和粒子测量揭示了在最大波功率间隔内热离子的俯仰角散射。观测结果表明,此时存在多种冷离子物种(H〜+,He〜+),低于航天器势和离子仪器的最小能量之和(<〜20 eV)。幸运的是,紧随最强烈的波活动之后,周围的等离子体流速立即变得足够大,以致冷离子可以加速进入粒子仪器的能量范围。因此,在粒子测量中以与冷质子和He〜+一致的能量揭示了两个低能离子成分。麦克斯韦拟合拟合提供了这些冷离子物种组分密度和温度的近似值。在观察到的条件下,平行传播的EMIC波的线性色散关系显示出冷等离子体He〜+阻带消失,与该时间间隔内的波测量结果一致。这些结果提供了第一个观察证据,表明冷离子物种的温度/密度在暖等离子体理论中通过重离子阻带控制线性波生长的重要性。

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