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Estimating relativistic electron pitch angle scattering rates using properties of the electromagnetic ion cyclotron wave spectrum

机译:估计相对论电子螺旋角散射率的使用性能离子回旋波电磁频谱

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An EMIC wave event observed by the CRRES spacecraft during an active period on 11 August 1991 was studied in order to estimate electron minimum interaction kinetic energy E min and using quasilinear theory, to calculate the resonant scattering rate D αα. The wave packet semibandwidth δω/2π full-width half maximum ranged from 0.06 Hz to 0.27 Hz. Resonant scattering was assumed to occur over the frequency interval ω m δω to ω m + δω. Assuming typical stormtime ion concentrations, the use of realistic wave spectral properties when compared to only using the central wave frequency ω m results in 3 to 4 times as many wave packets that are able to interact with relativistic electrons below ~2 MeV. Values of D αα associated with two of the wave packets, where E min falls to within the 1–2 MeV energy range, were comparable to the limit of strong diffusion suggesting enhanced electron precipitation. CRRES observed an ~1 order of magnitude decrease in the 1–2 MeV electron flux levels during the EMIC wave interval. It is suggested that this flux decrease was due to EMIC waves pitch angle scattering the relativistic electrons. The EMIC waves were observed near the start of the main phase of a geomagnetic storm. This study strengthens the suggestion that relativistic electron scattering by EMIC waves can compete with the Dst effect as a mechanism of decreasing relativistic electron fluxes from the outer zone during magnetic storms.
机译:一个位的波事件观察到哭泣8月11日飞船一个活跃的时期1991年是为了估计电子学习最小交互E min和动能利用拟线性理论,计算共振散射率Dαα。semibandwidthδω/ 2π宽屏最大值的一半0.27赫兹范围从0.06赫兹。散射被认为在发生频率间隔ωmδωωm +δω。典型的stormtime离子浓度,使用相比现实波浪谱属性只使用中央波频率ωm结果在波包的3到4倍能够与相对论电子互动~ 2兆电子伏以下。的波包,E min内落在哪里1 - 2兆电子伏能量范围的类似强极限扩散增强电子降水。数量级减少1 - 2兆电子伏电子通量水平位的波时间间隔。是由于螺旋角位的波散射的吗相对论性电子。观察附近的主要阶段的开始地磁风暴。建议相对论电子的散射位的波浪能与Dst的效果减少相对论电子的一种机制在磁场通量从外区风暴。

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