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RENORMALIZED TWO-FLUID HYDRODYNAMICS OF COSMIC-RAY-MODIFIED SHOCKS

机译:宇宙射线修饰冲击的规范化两流体水动力

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摘要

A simple two-fluid model of diffusive shock acceleration, introduced by Axford, Leer, & Skadron and Drury & Voelk, is revisited. This theory became a chief instrument in the studies of shock modification due to particle acceleration. Unfortunately its most intriguing steady state prediction about a significant enhancement of the shock compression and a corresponding increase of the cosmic-ray production violates assumptions which are critical for the derivation of this theory. In particular, for strong shocks the spectral flattening makes a cutoff-independent definition of pressure and energy density impossible and therefore causes an additional closure problem. Confining ourselves for simplicity to the case of plane shocks, assuming reacceleration of a preexisting cosmic-ray population, we argue that also under these circumstances the kinetic solution has a rather simple form. It can be characterized by only a few parameters, in the simplest case by the slope and the magnitude of the momentum distribution at the upper momentum cutoff. We relate these parameters to standard hydrodynamic quantities like the overall shock compression ratio and the downstream cosmic-ray pressure. The two-fluid theory produced in this way has the traditional form but renormalized closure parameters. By solving the renormalized Rankine-Hugoniot equations, we show that for the efficient stationary solution, most significant for cosmic-ray acceleration, the renormalization is needed in the whole parameter range of astrophysical interest.
机译:重新研究了由Axford,Leer和Skadron以及Drury&Voelk引入的扩散冲击加速度的简单两流体模型。该理论成为研究由于粒子加速而引起的冲击修正的主要工具。不幸的是,它关于冲击压缩的显着增强以及宇宙射线产生的相应增加的最有趣的稳态预测违反了对该理论的推论至关重要的假设。特别地,对于强烈的冲击,频谱平坦化使得压力和能量密度的独立于截止的定义变得不可能,并因此引起附加的闭合问题。为了简化平面冲击的发生,假设已经存在的宇宙射线粒子重新加速,我们认为在这种情况下动力学解也具有相当简单的形式。它只能由几个参数来表征,在最简单的情况下,可以由上动量截止处的动量分布的斜率和大小确定。我们将这些参数与标准流体动力量相关,例如整体冲击压缩比和下游宇宙射线压力。以这种方式产生的双流体理论具有传统形式,但重新规范了闭合参数。通过求解经过重新规范化的Rankine-Hugoniot方程,我们表明,对于有效的平稳解(对于宇宙射线加速最重要),需要在天体物理的整个参数范围内进行重新规范化。

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