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Coupled ion acceleration and Alfv′en wave excitation at an expanding coronal shock

机译:耦合离子加速度和Alfv'en波激发在扩张冠状震动

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Selfconsistent quasilinear theory for the formation of a gradual event consisting of solar energetic particles (SEPs) accelerated at an expanding coronal shock driven by coronal mass ejection is presented. The time-dependent ion transport equation and a wave kinetic equation are solved numerically in a spherical geometry. It is shown that the most high energy ions are produced at a distances of less than 4 solar radii above the photosphere. Soon after their acceleration the most energetic ions escape into the undisturbed interplanetary medium. These escaped particles are observed at the Earth’s orbit as a SEPs. It is shown that the model reproduces the observed features of gradual SEP events.
机译:呈现出在由冠状大气排出驱动的扩张冠状冲击下加速的太阳能粒子(SEP)组成的逐渐发生的自由拟线性理论。时间依赖性离子传输方程和波动力学方程在球面几何形状中以数值求解。结果表明,最高能量离子在光照面上小于4个太阳线的距离处产生。在他们加速后,最有能量的离子逃离了未受干扰的行星际培养基。在地球的轨道中观察到这些逃逸的颗粒作为SEPS。结果表明,该模型再现了逐步SEP事件的观察到的特征。

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