首页> 外文期刊>The Astrophysical journal >SCATTER-DOMINATED INTERPLANETARY TRANSPORT OF SOLAR ENERGETIC PARTICLES IN LARGE GRADUAL EVENTS AND THE FORMATION OF DOUBLE POWER-LAW DIFFERENTIAL FLUENCE SPECTRA OF GROUND-LEVEL EVENTS DURING SOLAR CYCLE 23
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SCATTER-DOMINATED INTERPLANETARY TRANSPORT OF SOLAR ENERGETIC PARTICLES IN LARGE GRADUAL EVENTS AND THE FORMATION OF DOUBLE POWER-LAW DIFFERENTIAL FLUENCE SPECTRA OF GROUND-LEVEL EVENTS DURING SOLAR CYCLE 23

机译:大梯度事件中太阳能量粒子的星际分布和太阳周期中地面事件双幂律差分流谱的形成

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The effects of scatter-dominated interplanetary transport on the spectral properties of the differential fluence of large gradual solar energetic particle (SEP) events are investigated analytically. The model assumes for simplicity radial constant solar wind and radial magnetic field. The radial diffusion coefficient is calculated with quasilinear theory by assuming a spectrum of Alfvén waves propagating parallel to the magnetic field. Cross-field transport is neglected. The model takes into consideration several essential features of gradual event transport: nearly isotropic ion distributions, adiabatic deceleration in a divergent solar wind, and particle radial scattering mean free paths increasing with energy. Assuming an impulsive and spherically symmetric injection of SEPs with a power-law spectrum near the Sun, the predicted differential fluence spectrum exhibits at 1 AU three distinctive power laws for different energy domains. The model naturally reproduces the spectral features of the double power-law proton differential fluence spectra that tend to be observed in extremely large SEP events. We select nine western ground-level events (GLEs) out of the 16 GLEs during Solar Cycle 23 and fit the observed double power-law spectra to the analytical predictions. The compression ratio of the accelerating shock wave, the power-law index of the ambient wave intensity, and the proton radial scattering mean free path are determined for the nine GLEs. The derived parameters are generally in agreement with the characteristic values expected for large gradual SEP events.
机译:分析性地研究了散射为主的星际传输对大梯度太阳高能粒子(SEP)事件微分通量光谱特性的影响。为简单起见,该模型假设径向恒定的太阳风和径向磁场。通过假设平行于磁场传播的Alfvén波频谱,利用准线性理论计算径向扩散系数。跨领域运输被忽略。该模型考虑了逐步事件传输的几个基本特征:几乎各向同性的离子分布,发散的太阳风中的绝热减速以及粒子的径向散射意味着自由路径随能量的增加而增加。假设在太阳附近具有幂律谱的SEP的脉冲和球对称注入,预测的差分注量谱在1 AU处表现出针对不同能量域的三个不同的幂律。该模型自然地再现了双幂律质子微分注量谱的光谱特征,该光谱特征往往在非常大的SEP事件中观察到。我们在太阳周期23的16个GLE中选择了9个西方地面事件(GLE),并将观测到的双幂律谱拟合到分析预测中。确定了9个GLE的加速冲击波的压缩比,环境波强度的幂律指数和质子径向散射平均自由程。导出的参数通常与大型渐进SEP事件的预期特征值一致。

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