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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Evolution of Pitch Angle Distributions of Relativistic Electrons During Geomagnetic Storms: Van Allen Probes Observations
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Evolution of Pitch Angle Distributions of Relativistic Electrons During Geomagnetic Storms: Van Allen Probes Observations

机译:进化的螺旋角分布相对论电子在磁暴期间:范艾伦辐射探测器的观测

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We present a study analyzing relativistic and ultra relativistic electron energization and the evolution of pitch angle distributions using data from the Van Allen Probes. We study the connection between energization and isotropization to determine if there is a coherence across storms and across energies. Pitch angle distributions are fit with a J0sinnθ function, and the variable “n” is characterized as the pitch angle index and tracked over time. Our results show that consistently across all storms with ultra relativistic electron energization, electron distributions are most anisotropic within around a day of Dstmin and become more isotropic in the following week. Also, each consecutively higher energy channel is associated with higher anisotropy after storm main phase. Changes in the pitch angle index are reflected in each energy channel; when 1.8 MeV electron pitch angle distributions increase (or decrease) in pitch angle index, so do the other energy channels. We show that the peak anisotropies differ between coronal mass ejection (CME)- and corotating interaction region (CIR)-driven storms and measure the relaxation rate as the anisotropy falls after the storm. The isotropization rate in pitch angle index for CME-driven storms is -0.15 ± 0.02 day~(-1) at 1.8 MeV, -0.30 ± 0.01 day~(-1) at 3.4 MeV, and -0.39 ± 0.02 day~(-1) at 5.2 MeV. For CIRdriven storms, the isotropization rates are -0.10 ± 0.01 day~(-1) for 1.8 MeV, -0.13 ± 0.02 day~(-1) for 3.4 MeV, and -0.11 ± 0.02 day~(-1) for 5.2 MeV. This study shows that there is a global coherence across energies and that storm type may play a role in the evolution of electron pitch angle distributions.
机译:我们提出一个分析相对论和学习超相对论电子激发和进化的螺旋角分布数据范艾伦辐射探测器。激发和之间的联系isotropization来确定是否存在在能量风暴和连贯性。螺旋角分布都符合J0sinnθ函数和变量的特点是“n”螺旋角指数随着时间的推移和跟踪。我们的结果表明,始终在所有超相对论电子的风暴通电、电子分布最多在大约一天的Dstmin和各向异性更在下周各向同性。另外,每个连续更高的能源通道风暴后与高各向异性主要阶段。反映在每个能源通道;增加(或电子螺旋角分布在螺旋角指数减少),所以做另一个能源通道。各向异性日冕物质抛射之间的不同(CME),共转交互区域(CIR)简况风暴和测量松弛率的各向异性落在风暴之后。螺旋角isotropization率指数CME-driven风暴是-0.15±0.02天~(1)为1.8兆电子伏,-0.30±0.01天~(1)3.4兆电子伏,和-0.395.2±0.02天~(1)兆电子伏。isotropization利率-0.10±0.01天~(1)1.8兆电子伏,-0.13±0.02天~ (1)3.4兆电子伏,-0.11±0.02天~(1)5.2兆电子伏。这项研究表明,有一个全球一致性在能量风暴类型可能发挥进化过程中所扮演的角色电子螺旋角分布。

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