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首页> 外文期刊>The Astrophysical journal >ON THE VARIATION OF SOLAR FLARE CORONAL X-RAY SOURCE SIZES WITH ENERGY
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ON THE VARIATION OF SOLAR FLARE CORONAL X-RAY SOURCE SIZES WITH ENERGY

机译:太阳耀斑冠状X射线源尺寸随能量的变化

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Observations with RHESSI have enabled the detailed study of the structure of dense hard X-ray coronal sources in solar flares. The variation of source extent with electron energy has been discussed in the context of streaming of non-thermal particles in a one-dimensional cold target model and the results used to constrain both the physical extent of, and density within, the electron acceleration region. Here, we extend this investigation to a more physically realistic model of electron transport that takes into account the finite temperature of the ambient plasma, the initial pitch angle distribution of the accelerated electrons, and the effects of collisional pitch angle scattering. The finite temperature results in the thermal diffusion of electrons, which leads to the observationally inferred value of the acceleration region volume being an overestimate of its true value. The different directions of the electron trajectories, a consequence of both the non-zero injection pitch angle and scattering within the target, cause the projected propagation distance parallel to the guiding magnetic field to be reduced, so that a one-dimensional interpretation can overestimate the actual density by a factor of up to ~6. The implications of these results for the determination of acceleration region properties (specific acceleration rate, filling factor, etc.) are discussed.
机译:用RHESSI进行的观测已经能够详细研究太阳耀斑中密集的硬X射线日冕源的结构。在一维冷目标模型中非热粒子流的情况下,讨论了源范围随电子能量的变化,其结果用于约束电子加速区域的物理范围和密度。在这里,我们将此研究扩展到一个更物理逼真的电子传输模型,该模型考虑了环境等离子体的有限温度,加速电子的初始螺距角分布以及碰撞螺距角散射的影响。有限的温度导致电子的热扩散,这导致观察到的加速区域体积的推断值高估了其真实值。电子轨迹的不同方向是非零注入俯仰角和靶内散射的结果,导致平行于引导磁场的投影传播距离减小,因此一维解释可能会高估实际密度最高可达〜6。讨论了这些结果对于确定加速区域特性(特定加速率,填充系数等)的含义。

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