首页> 外文期刊>The Astrophysical journal >TRAPPING AND PRECIPITATION OF PROTONS DURING STOCHASTIC ACCELERATION IN MAGNETIC LOOPS
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TRAPPING AND PRECIPITATION OF PROTONS DURING STOCHASTIC ACCELERATION IN MAGNETIC LOOPS

机译:磁环中随机加速过程中质子的陷获和沉淀

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摘要

We study confinement of particles during the stochastic acceleration in coronal magnetic loops. Analy- tic solutions and Monte Carlo simulations of the coordinate-dependent focused-diffusion transport and acceleration are employed to deduce the effective leaky-box escape time, T_esc' The rigorously correct expression of the escape time yields the leaky-box--model spectrum of accelerated particles, which exactly coincides with the high-energy asymptote of a spectrum deduced by including all spatial dependencies into the diffusion equation. Besides the application to the acceleration studies, the deduced escape time allows one to relate the spectra of protons generating neutrons and gamma-rays in the coronal portion of the loop to the spectra in and below the chromosphere. As an illustration, we discuss the model implications for y-ray and neutron observations of the behind-the-limb flares.
机译:我们研究了在冠状磁环中随机加速过程中的粒子约束。坐标相关的聚焦扩散传输和加速度的解析解和蒙特卡洛模拟被用来推导有效的泄漏箱逃逸时间,T_esc'。严格正确的逃逸时间表达式产生了泄漏箱模型谱通过将所有空间相关性包括在扩散方程中而得出的频谱的高能渐近线恰好与加速粒子的分布一致。除了应用于加速研究之外,推导的逸出时间还使人们可以将在环冠部分产生质子的中子和伽马射线的质子光谱与色球体内外的光谱联系起来。作为说明,我们讨论了对后肢耀斑的y射线和中子观测的模型含义。

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