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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >The effects of magnetospheric processes on relativistic electron dynamics in the Earth's outer radiation belt
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The effects of magnetospheric processes on relativistic electron dynamics in the Earth's outer radiation belt

机译:磁体过程对地球外辐射带中相对论电子动力学的影响

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摘要

Using the electron phase space density (PSD) data measured by Van Allen Probe A from January 2013 to April 2015, we investigate the effects of magnetospheric processes on relativistic electron dynamics in the Earth's outer radiation belt during 50 geomagnetic storms. A statistical study shows that the maximum electron PSDs for various mu (mu = 630, 1096, 2290, and 3311 MeV/G) at L*similar to 4.0 after the storm peak have good correlations with storm intensity (cc similar to 0.70). This suggests that the occurrence and magnitude of geomagnetic storms are necessary for relativistic electron enhancements at the inner edge of the outer radiation belt (L* = 4.0). For moderate or weak storm events (SYM-H-min > similar to-100 nT) with weak substorm activity (AE(max) < 800 nT) and strong storm events (SYM-Hmin = similar to-100 nT) with intense substorms (AE(max) >= 800 nT) during the recovery phase, the maximum electron PSDs for various mu at different L* values (L* = 4.0, 4.5, and 5.0) are well correlated with storm intensity (cc > 0.77). For storm events with intense substorms after the storm peak, relativistic electron enhancements at L* = 4.5 and 5.0 are observed. This shows that intense substorms during the storm recovery phase are crucial to relativistic electron enhancements in the heart of the outer radiation belt. Our statistics study suggests that magnetospheric processes during geomagnetic storms have a significant effect on relativistic electron dynamics.
机译:在2013年1月至2015年1月到2015年4月,使用Van Allen探针测量的电子相空间密度(PSD)数据,在50个地磁风暴期间调查磁体过程对地球外辐射带中相对论电子动力学的影响。统计学研究表明,在风暴峰与风暴强度(CC类似于0.70)的情况下,在L *具有良好的相关性之后,在L *与风暴强度的相关性具有良好的相关性(类似于0.70),其各种MU(MU = 630,1096,2290和3311mev / g)的最大电子PSD在L *具有良好的相关性(类似于0.70)。这表明在外辐射带内边缘处的相对论电子增强(L * = 4.0)所需的地磁风暴的发生和幅度是必要的。对于中等或弱小的风暴事件(Sym-H Min>类似于-100nt),具有弱的取代活动(AE(MAX)<800 nt)和强风暴事件(Sym-Hmin =类似于-100nt),具有激烈的取代物(AE(MAX)> = 800nt)在恢复阶段期间,不同L *值(​​L * = 4.0,4.5和5.0)的各种MU的最大电子PSD与风暴强度(CC> 0.77)良好相关。对于风暴峰后具有强烈替代品的风暴事件,观察到L * = 4.5和5.0处的相对论电子增强。这表明风暴回收相期间的强烈取代对外辐射带内心的相对论电子增强至关重要。我们的统计研究表明,地磁风暴​​期间的磁体过程对相对论电子动力学产生了显着影响。

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    Shandong Univ Shandong Prov Key Lab Opt Astron &

    Solar Terr Env Inst Space Sci Weihai Peoples R China;

    Chinese Acad Sci Sate Key Lab Space Weather Beijing Peoples R China;

    Wuhan Univ Sch Elect Informat Dept Space Phys Wuhan Hubei Peoples R China;

    Univ Sci &

    Technol China Dept Geophys &

    Planetary Sci CAS Key Lab Geospace Environm Hefei Anhui Peoples R China;

    Los Alamos Natl Lab ISR Div Los Alamos NM USA;

    Univ New Hampshire Ctr Space Sci Durham NH 03824 USA;

    Univ Colorado Boulder Lab Atmospher &

    Space Res Boulder CO USA;

    Univ New Hampshire Ctr Space Sci Durham NH 03824 USA;

    Los Alamos Natl Lab ISR Div Los Alamos NM USA;

    Aerosp Corp POB 92957 Los Angeles CA 90009 USA;

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  • 正文语种 eng
  • 中图分类 生物分布与生物地理学;
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