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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Origin of energetic electron precipitation 30 keV into the atmosphere
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Origin of energetic electron precipitation 30 keV into the atmosphere

机译:高能电子降水 30 keV的起源到大气中

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Energetic electrons are deposited into the atmosphere from Earth's inner magnetosphere, resulting in the production of odd nitrogen (NO_x). During polar night, NO_x can be transported to low altitudes, where it can destroy ozone, affecting the atmospheric radiation balance. Since the flux of energetic electrons trapped in the magnetosphere is related to solar activity, the precipitation of these electrons into Earth's atmosphere provides a link between solar variability and changes in atmospheric chemistry which may affect Earth's climate. To determine the global distribution of the precipitating flux, we have built a statistical model binned by auroral electrojet (AE) index, magnetic local time (MLT), and L shell of E > 30 keV precipitating electrons from the Medium Energy Proton and Electron Detector (MEPED) on board the NOAA Polar Orbiting Environmental Satellites (POES) low-altitude satellites NOAA-15, NOAA-16, NOAA-17, and NOAA-18. We show that the precipitating flux increases with geomagnetic activity, suggesting that the flux is related to substorm activity. The precipitating fluxes maximize during active conditions where they are primarily seen outside of the plasmapause on the dawnside. The global distribution of the precipitating flux of E > 30 keV electrons is well-correlated with the global distribution of lower-band chorus waves as observed by the plasma wave experiment onboard the Combined Release and Radiation Effects Satellite (CRRES) satellite. In addition, the electron precipitation occurs where the pitch angle diffusion coefficient due to resonant interaction between electrons and whistler mode chorus waves is high, as calculated using the pitch angle and energy diffusion of ions and electrons (PADIE) code. Our results suggest that lower-band chorus is very important for scattering >30 keV electrons from Earth's inner magnetosphere into the atmosphere.
机译:高能电子存入从地球大气的内部磁气圈,导致奇怪的氮的生产(NO_x)。它可以运输到低海拔地区破坏臭氧层,影响大气辐射平衡。电子被困在磁层有关太阳活动的沉淀电子进入地球大气提供了一个链接太阳活动和变化之间的关系可能会影响地球的大气化学气候。沉淀通量,我们已经建立了一个统计模型被极光电喷流当地时间(AE)指数,磁(MLT)和L壳牌的E > 30 keV沉淀电子中能量质子和电子探测器(mep) NOAA极地轨道上环境卫星(po)低空NOAA-18。与地磁活动增加,暗示通量亚暴活动有关。活动期间沉淀通量最大化条件,他们主要是看到外面dawnside等离子体层顶的。沉淀通量的分布E > 30凯文电子与全球密切相关lower-band合唱波分布观察到等离子体波的实验合并后的释放和辐射效应卫星(crr)卫星。电子降水出现在球场的地方由于共振角扩散系数电子和惠斯勒之间的交互模式合唱波高,计算使用离子和螺旋角和能量扩散电子(PADIE)代码。lower-band合唱是非常重要的散射> 30 keV电子从地球的内部磁气圈到大气中。

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