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Correlation of near-Earth proton enhancements >100 MeV with parameters of solar microwave bursts

机译:大于100 MeV的近地质子增强与太阳微波爆发参数的相关性

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We analyze the relations between various combinations of peak fluxes and fluences of solar microwave bursts at 35 GHz recorded with the Nobeyama Radio Polarimeters during 1990–2015, and corresponding parameters of proton enhancements with E>100 MeV exceeding 0.1 pfu registered by GOES monitors in near-Earth environment. The highest correlation has been found between the microwave and proton fluences. This fact reflects a dependence of the total number of protons on the total duration of the acceleration process. In the events with strong flares, the correlation coefficients of proton fluences with microwave and soft X-ray fluences are higher than those with speeds of coronal mass ejections. The results indicate a statistically larger contribution of flare processes to acceleration of high-energy protons. Acceleration by shock waves seems to be less important at high energies in events associated with strong flares, although its contribution probably prevails in weaker events. The probability of a detectable proton enhancement was found to directly depend on the peak flux and duration of a microwave burst. This can be used for diagnostics of proton enhancements based on microwave observations.
机译:我们分析了Nobeyama射电极谱仪在1990-2015年记录的35 GHz峰值通量和太阳微波脉冲通量的各种组合之间的关系,以及GOES监测仪记录的E> 100 MeV超过0.1 pfu的质子增强的相应参数-地球环境。已发现微波通量和质子通量之间的最高相关性。这一事实反映了质子总数对加速过程总持续时间的依赖性。在耀斑强烈的事件中,质子通量与微波和软X射线通量的相关系数高于日冕质量抛射速度的相关系数。结果表明,耀斑过程在统计上对高能质子加速的贡献更大。尽管在较弱的事件中其作用可能占主导地位,但在高能量下与强火炬相关的事件中,冲击波的加速作用似乎并不那么重要。发现可检测的质子增强的可能性直接取决于峰值通量和微波爆发的持续时间。可将其用于基于微波观测的质子增强诊断。

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