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Variations of the relative abundances of He, (C, N, O) and Fe-group nuclei in solar cosmic rays and their relationship to solar particle acceleration

机译:太阳宇宙射线中He、(C、N、O)和Fe族原子核的相对丰度变化及其与太阳粒子加速的关系

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Measurements of the flux of helium nuclei in the 24 January, 1971, event and of helium and (C, N, O) nuclei in the 1 September, 1971, event are combined with previous measurements to obtain the relative abundances of helium, (C, N, O), and Fe-group nuclei in these events. These data are then summarized together with previously reported results to show that, even when the same detector system using a dE/dxplus range technique is used, differences in the He/(C, N, O) value in the same energy/nucleon interval are observed in solar cosmic ray events. Further, when the He/(C, N, O) value is lower the He/(Fe-group nuclei) value is also systematically lower in these large events. When solar particle acceleration theory is analyzed, it is seen that the results suggest that, for large events, Coulomb energy loss probably does not play a major role in determining solar particle composition at higher energies (>10 MeV). The variations in multicharged nuclei composition are more likely due to partial ionization during the acceleration phase.
机译:对1971年1月24日事件中氦原子核通量的测量结果以及1971年9月1日事件中氦原子核和(C,N,O)原子核的通量测量结果与先前的测量结果相结合,以获得这些事件中氦、(C、N、O)和铁族原子核的相对丰度。然后将这些数据与先前报告的结果汇总在一起,以表明即使使用使用dE/dxplus范围技术的相同探测器系统,在太阳宇宙射线事件中也观察到相同能量/核子间隔内的He/(C,N,O)值的差异。此外,当He/(C,N,O)值较低时,在这些大型事件中,He/(Fe-族核)值也系统地降低。当分析太阳粒子加速理论时,可以看出,结果表明,对于大型事件,库仑能量损失在决定较高能量(>10 MeV)下的太阳粒子组成方面可能没有主要作用。多电荷原子核组成的变化更可能是由于加速阶段的部分电离。

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