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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Generation of highly energetic electrons by shock waves in the solar corona
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Generation of highly energetic electrons by shock waves in the solar corona

机译:太阳日冕中的冲击波产生高能电子

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摘要

In the solar corona, shock waves are generated by flares or coronal mass ejections. These shock waves are able to accelerate electrons up to high energies as observed by radio astronomical methods in terms of type II radio bursts and by extraterrestrial in situ measurements. A mechanism of electron acceleration acting at small spatial and temporal scales near the shock transition is presented and then compared with measurements of the Comprehensive Suprathermal and Energetic Particle Analyzer (COSTEP) instrument aboard the SOHO spacecraft during a particular solar event. A numerical hybrid simulation performed under typical coronal circumstances shows that strong magnetic field fluctuations appear immediately at the vicinity of the shock transition. Multiple encounters of electrons with such large-amplitude fluctuations lead to considerable acceleration up to high energies of about 1 MeV. [References: 61]
机译:在日冕中,耀斑或日冕物质抛射会产生冲击波。这些冲击波能够将电子加速至高能量,这是通过射电天文方法根据II型射电爆发和通过地外原位测量观察到的。提出了一种电子加速度作用机制,该机制作用于冲击转变附近的小时空尺度,然后与特定太阳事件期间SOHO航天器上的综合超热能粒子分析仪(COSTEP)的测量结果进行比较。在典型的日冕条件下进行的数值混合模拟表明,强烈的磁场波动会在冲击转变附近立即出现。具有如此大的幅度波动的电子的多次相遇导致相当大的加速,直至约1 MeV的高能量。 [参考:61]

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