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Relativistic magnetospheric electrons: Lower ionospheric conductivity and long-term atmospheric variability

机译:相对论的磁层电子:较低的电离层电导率和长期大气变化

摘要

Long term observations of relativistic electrons in the earth's outer magnetosphere show a strong solar cycle dependence with a prominent intensity maximum during the approach to solar minimum. This population therefore closely corresponds to the presence of high speed solar wind streams emanating from solar coronal holes. Using a numerical code, the precipitating electron energy deposition in the earth's upper and middle atmosphere were calculated. Observed events (typically persisting several days) would have maximum effect in the 40 to 60 km altitude range with peak energy depositions greater than 110 keV/cu cm-s. It is suggested that this electron population could play an important long term role in modulating lower D region ionization and middle atmospheric ozone chemistry. Methods are described of observing middle atmospheric and lower ionospheric effects of the electrons including balloon, riometer, and space-based ozone sensor systems. A particularly promising approach may involve the monitoring of global Schumann resonance modes which are sensitive to global changes in the properties of the earth-ionosphere cavity. Present work indicates that Schumann resonance properties are moderately correlated with the flux of precipitating relativistic electrons thus offering the possibility of continuously monitoring this aspect of magnetosphere-atmosphere coupling.
机译:对地球外磁层中相对论电子的长期观察表明,在接近太阳极小值期间,太阳极强的依赖于太阳周期,并且强度极大。因此,该数量与太阳日冕孔发出的高速太阳风的存在紧密对应。使用数字代码,计算了地球上层和中层大气中沉淀的电子能量沉积。观测到的事件(通常持续几天)将在40至60 km的海拔范围内发挥最大作用,峰值能量沉积大于110 keV / cu cm-s。这表明该电子种群可在调节下部D区电离和中层大气臭氧化学中起重要的长期作用。描述了观察电子的中间大气和较低电离层效应的方法,包括气球,测距仪和基于空间的臭氧传感器系统。一种特别有前途的方法可能涉及对全局Schumann共振模式的监视,该模式对地球电离层空腔性质的全局变化敏感。目前的工作表明舒曼的共振特性与沉淀相对论电子的通量适度相关,因此提供了连续监测磁层-大气耦合这一方面的可能性。

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