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激波加速离子的能谱对激波穿越时动力学过程的依赖性。

Dependence of the Spectrum of Shock-Accelerated Ions on the Dynamics at the Shock Crossing.

作者信息

Gedalin M, Dröge W, Kartavykh Y Y

机构信息

Department of Physics, Ben-Gurion University of the Negev, Beer-Sheva 8410501, Israel.

Institute for Theoretical Physics and Astrophysics, University of Würzburg, Würzburg 97074, Germany.

出版信息

Phys Rev Lett. 2016 Dec 30;117(27):275101. doi: 10.1103/PhysRevLett.117.275101. Epub 2016 Dec 28.

Abstract

Diffusive shock acceleration (DSA) of ions occurs due to pitch-angle diffusion in the upstream and downstream regions of the shock and multiple crossing of the shock by these ions. The classical DSA theory implies continuity of the distribution at the shock transition and predicts a universal spectrum of accelerated particles, depending only on the ratio of the upstream and downstream fluid speeds. However, the ion dynamics at the shock front occurs within a collision-free region and is gyrophase dependent. The ions fluxes have to be continuous at the shock front. The matching conditions for the gyrophase-averaged distribution functions at the shock transition are formulated in terms of the transition and reflection probabilities. These probabilities depend on the shock angle and the magnetic compression as does the power spectrum of accelerated ions. Their spectral index is expressed in terms of the reflectivity. The spectrum is typically harder than the spectrum predicted by the classical DSA theory.

摘要

离子的扩散激波加速(DSA)是由于激波上游和下游区域的俯仰角扩散以及这些离子多次穿越激波而发生的。经典的DSA理论意味着在激波过渡处分布的连续性,并预测了加速粒子的通用谱,仅取决于上游和下游流体速度的比值。然而,激波前沿的离子动力学发生在无碰撞区域内,并且与回旋相位有关。离子通量在激波前沿必须是连续的。激波过渡处回旋相位平均分布函数的匹配条件是根据跃迁和反射概率来制定的。这些概率取决于激波角和磁压缩,加速离子的功率谱也是如此。它们的谱指数用反射率来表示。该谱通常比经典DSA理论预测的谱更硬。

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