木星辐射带中相对论性电子强度的大规模偶发性增强

IF 2.9 3区 地球科学 Earth and Planetary Physics Pub Date : 2021-09-13 DOI:10.26464/epp2021037
ChongJing Yuan, YiQiao Zuo, Elias Roussos, Yong Wei, YiXin Hao, YiXin Sun, Norbert Krupp
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引用次数: 2

摘要

先前的研究表明,在木星磁层中,相对论性电子强度的径向分布的长期趋势主要是由缓慢的径向扩散形成的。然而,伽利略号航天器的测量结果显示,MeV电子强度的瞬态增长远高于环境分布。目前还不清楚这种短暂的增强有多普遍,也不清楚它们的发生与木星磁层中的哪些动态过程有关。我们研究了伽利略号航天器从1996年到2002年测量的11 MeV和1 MeV电子强度的径向分布。我们发现在七次伽利略交叉期间,MeV电子的瞬态增强,主要发生在~ 20RJ左右。它们发生的明显的黎明-黄昏不对称被解决了,大多数事件是在黎明发现的。这种黎明-黄昏的不对称性,以及平均数天的重复时间尺度,暗示了MeV电子瞬变与中、外磁层中类似风暴的动态之间的潜在关系,这些动态是由伽利略号、朱诺号和遥感极光观测到的。我们认为,在内磁层观测到的这些瞬变可能是由大规模的黎明-黄昏电场对流输送和中磁层注入提供的源之间的协同作用造成的。
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Large-scale episodic enhancements of relativistic electron intensities in Jupiter's radiation belt

Previous studies indicate that, in the Jovian magnetosphere, the long-term trend of the radial profile of relativistic electron intensities is primarily shaped by slow radial diffusion. However, measurements by the Galileo spacecraft reveal the existence of transient increases in MeV electron intensities well above the ambient distribution. It is unclear how common such transient enhancements are, and to which dynamic processes in Jupiter's magnetosphere their occurrence is linked. We investigate the radial distributions of 11 MeV and 1 MeV electron intensities from to ( denotes the Jovian radius), measured by the Galileo spacecraft from 1996 to 2002. We find transient enhancements of MeV electrons during seven Galileo crossings, mostly occurring around ∼20RJ. An apparent dawn-dusk asymmetry of their occurrence is resolved, with a majority of events discovered at dawn. This dawn-dusk asymmetry, as well as the average recurrence time scale of a few days, implies a potential relationship between the MeV electron transients and the storm-like dynamics in the middle and outer magnetosphere detected using a variety of Galileo, Juno and remote sensing aurora observations. We suggest that the observations of some of these transients in the inner magnetosphere may result from a synergy between the convective transport by a large-scale dawn-dusk electric field and the sources provided by injections in the middle magnetosphere.

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来源期刊
Earth and Planetary Physics
Earth and Planetary Physics GEOSCIENCES, MULTIDISCIPLINARY-
自引率
17.20%
发文量
174
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