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垂直激波条件下能量粒子加速机制的模拟研究
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作者 孙鹏 秦刚 王赤 《空间科学学报》 CAS CSCD 北大核心 2007年第6期441-447,共7页
在具有湍动的磁场和垂直激波条件下对大量测试粒子的轨迹进行了数值计算,研究了激波强度和粒子初始能量对于粒子穿越激波的平均能量变化的影响,分析了漂移加速(SDA)在不同条件下对粒子加速的贡献,并给出了一个与数值结果相符合的漂移加... 在具有湍动的磁场和垂直激波条件下对大量测试粒子的轨迹进行了数值计算,研究了激波强度和粒子初始能量对于粒子穿越激波的平均能量变化的影响,分析了漂移加速(SDA)在不同条件下对粒子加速的贡献,并给出了一个与数值结果相符合的漂移加速理论公式ΔE=amv_iv_(up)(1-1/s).结果表明,加入磁场湍流后,垂直激波条件下粒子仍主要受到漂移加速作用,而基于粒子引导中心的耗散漂移加速理论在此条件下失效. 展开更多
关键词 高能粒子 激波加速 漂移加速 耗散加速 垂直激波 磁湍流
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垂直激波加速中粒子动量变化的数值模拟研究 被引量:1
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作者 孔凡婧 秦刚 《河南师范大学学报(自然科学版)》 CAS 北大核心 2019年第3期9-14,共6页
利用测试粒子数值模拟的方法统计研究了电子在垂直激波附近每次穿越过程中的动量增量随粒子速度的变化规律.模拟采用的磁场模型是由均匀的背景磁场和"slab+2D"形式的三维湍流磁场叠加构成的.数值结果表明,粒子穿越激波面前后... 利用测试粒子数值模拟的方法统计研究了电子在垂直激波附近每次穿越过程中的动量增量随粒子速度的变化规律.模拟采用的磁场模型是由均匀的背景磁场和"slab+2D"形式的三维湍流磁场叠加构成的.数值结果表明,粒子穿越激波面前后的相对动量变化和粒子动量的相对变化率均随速度的增加而减小,当速度大于2×10~8m/s时,粒子动量的相对变化率随速度呈现更加显著的衰减趋势,明显反映出相对论参数γ=1/■所引起的物理效应.模拟结果在较大的湍流强度范围内都与理论给出的变化关系较为一致. 展开更多
关键词 垂直激波 电子加速 动量变化 测试粒子模拟
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Particle acceleration and transport in the inner heliosphere
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作者 LI Gang 《Science China Earth Sciences》 SCIE EI CAS CSCD 2017年第8期1440-1465,共26页
In the solar system, our Sun is Nature's most efficient particle accelerator. In large solar flares and fast coronal mass ejections(CMEs), protons and heavy ions can be accelerated to over ~GeV/nucleon. Large flar... In the solar system, our Sun is Nature's most efficient particle accelerator. In large solar flares and fast coronal mass ejections(CMEs), protons and heavy ions can be accelerated to over ~GeV/nucleon. Large flares and fast CMEs often occur together. However there are clues that different acceleration mechanisms exist in these two processes. In solar flares, particles are accelerated at magnetic reconnection sites and stochastic acceleration likely dominates. In comparison, at CME-driven shocks,diffusive shock acceleration dominates. Besides solar flares and CMEs, which are transient events, acceleration of particles has also been observed in other places in the solar system, including the solar wind termination shock, planetary bow shocks, and shocks bounding the Corotation Interaction Regions(CIRs). Understanding how particles are accelerated in these places has been a central topic of space physics. However, because observations of energetic particles are often made at spacecraft near the Earth,propagation of energetic particles in the solar wind smears out many distinct features of the acceleration process. The propagation of a charged particle in the solar wind closely relates to the turbulent electric field and magnetic field of the solar wind through particle-wave interaction. A correct interpretation of the observations therefore requires a thorough understanding of the solar wind turbulence. Conversely, one can deduce properties of the solar wind turbulence from energetic particle observations. In this article I briefly review some of the current state of knowledge of particle acceleration and transport in the inner heliosphere and discuss a few topics which may bear the key features to further understand the problem of particle acceleration and transport. 展开更多
关键词 Solar energetic particles Diffusive shock acceleration perpendicular diffusion coefficient
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