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Evaluation of Plasma Properties From ChorusWaves Observed at the Generation Region

机译:评估从ChorusWaves等离子体特性观察到一代地区

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In this study we present an inversion method which provides thermal plasma population parameters from characteristics of chorus emissions only. Our ultimate goal is to apply this method to ground-based data in order to derive the lower-energy boundary condition for many radiation belt models. The first step is to test the chorus inversion method on in situ data of the Van Allen Probes in the generation region. The density and thermal velocity of energetic electrons (few kiloelectron volts to 100 keV) are derived from frequency sweep rate and starting frequencies of chorus emissions through analysis of wave data from the Electric and Magnetic Field Instrument Suite and Integrated Science on board the Van Allen Probes. The nonlinear wave growth theory of Omura and Nunn (2011, https://doi.org/ 10.1029/2010JA016280) serves as the basis for our inversion method, assuming that the triggering wave is originated by the linear cyclotron instability.We present 16 consecutive rising-tone emissions recorded in the generation region between 11 and 12 UT on 14 November 2012. The results of the inversion are compared with density and thermal velocities (parallel and perpendicular) of energetic electrons derived from the unidirectional flux data of the Helium, Oxygen, Proton, and Electron instrument, showing a good agreement: The normalized root-mean-square deviation between the measured and predicted values are less than ~ 15%.We found that the theoretical amplitudes are consistent with the measured ones. The relation between linear and nonlinear wave growth agrees with our basic assumption;namely, linear growth is a preceding process of nonlinear wave growth.We analyze electron distributions at the relativistic resonant energy ranges.
机译:在本研究中我们提出的反演方法人口提供了热等离子体参数仅从合唱排放的特点。我们的最终目标是将这种方法应用到为了推导出地面数据较长的边界条件辐射带模型。合唱现场数据的反演方法一代地区的范艾伦辐射探测器。精力充沛的密度和热速度电子(几个kiloelectron伏到100 keV)来自频率扫描速度和开始通过分析频率合唱的排放波数据的电场和磁场工具套件和综合科学范艾伦辐射探测器。Omura理论和纳恩(2011年,https://doi.org/10.1029/2010 ja016280)作为我们的基础反演方法,假设触发波是由线性回旋不稳定。在生成地区排放记录2012年11月14日11和12之间UT。反演结果进行比较密度和热速度(并行垂直的高能电子从单向通量数据的氦,氧气、质子和电子仪器,显示一个很好的协议:归一化均方根测量和预测之间的偏差值小于~ 15%。理论振幅是一致的测量的。非线性波的增长我们基本同意假设,即线性增长之前非线性波增长的过程。在相对论性电子分布共振能量范围。

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