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Multiple loss processes of relativistic electrons outside the heart of outer radiation belt during a storm sudden commencement

机译:多个损失相对论电子的过程外期间外辐射带的核心暴风雨突然开始

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By examining the compression-induced changes in the electron phase space density and pitch angle distribution observed by two satellites of Van Allen Probes (RBSP-A/B), we find that the relativistic electrons (>2 MeV) outside the heart of outer radiation belt (L* ≥ 5) undergo multiple losses during a storm sudden commencement. The relativistic electron loss mainly occurs in the field-aligned direction (pitch angle α150°), and the flux decay of the field-aligned electrons is independent of the spatial location variations of the two satellites. However, the relativistic electrons in the pitch angle range of 30°–150° increase (decrease) with the decreasing (increasing) geocentric distance (|ΔL|<0.25) of the RBSP-B (RBSP-A) location, and the electron fluxes in the quasi-perpendicular direction display energy-dispersive oscillations in the Pc5 period range (2–10 min). The relativistic electron loss is confirmed by the decrease of electron phase space density at high-L shell after the magnetospheric compressions, and their loss is associated with the intense plasmaspheric hiss, electromagnetic ion cyclotron (EMIC) waves, relativistic electron precipitation (observed by POES/NOAA satellites at 850 km), and magnetic field fluctuations in the Pc5 band. The intense EMIC waves and whistler mode hiss jointly cause the rapidly pitch angle scattering loss of the relativistic electrons within 10 h. Moreover, the Pc5 ULF waves also lead to the slowly outward radial diffusion of the relativistic electrons in the high-L region with a negative electron phase space density gradient.
机译:通过检查compression-induced变化电子相空间密度和螺距角分布观察到货车的两颗卫星艾伦探针(RBSP-A / B),我们发现相对论性电子(> 2兆电子伏)外的心外辐射带(L *≥5)接受多个在风暴突然开始亏损。损失主要发生在相对论性电子field-aligned(螺距角α 150°),和field-aligned的通量衰减电子是独立的空间位置变化的两颗卫星。相对论电子在螺旋角的范围30°-150°的增加(减少)减少(增加)地心的距离(|ΔL | < 0.25)的RBSP-B (RBSP-A)位置,和quasi-perpendicular电子通量显示能量色散方向振动Pc5时期范围(2 - 10分钟)。相对论电子确认的损失减少电子相空间密度high-L磁性层的后壳按压,其损失是联系在一起的激烈的plasmaspheric嘶嘶声、电磁离子回旋波(位的),相对论性电子降水(po /观察到NOAA卫星在850公里),磁场的波动Pc5乐队。模式嘶嘶声共同导致快速螺旋角散射损失的相对论性电子在10 h。此外,Pc5 ULF波导致的慢慢向外的径向扩散相对论电子在high-L地区用负的电子相空间密度梯度。

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