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首页> 外文期刊>The Astrophysical journal >NUMERICAL SIMULATIONS OF LOCAL SHOCK REFORMATION AND ION ACCELERATION IN SUPERNOVA REMNANTS
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NUMERICAL SIMULATIONS OF LOCAL SHOCK REFORMATION AND ION ACCELERATION IN SUPERNOVA REMNANTS

机译:超新星残骸中局部激变和离子加速的数值模拟

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The identification of preacceleration mechanisms for cosmic rays in supernova remnant shocks is an outstanding problem in astrophysics. Recent particle-in-cell (PIC) shock simulations have shown that the inclusion of the full electron kinetics yields non-time-stationary solutions, in contrast to previous hybrid (kinetic ions, fluid electrons) simulations. Here, by running a PIC code at high phase space resolution, we identify a new ion acceleration mechanism associated with the time dependence of the shock. From simple scaling arguments, these results suggest that for realistic parameters at supernova remnant shocks, such as an inflow speed of around 2.5 x 10~7 m s~(-1), an accelerated ion population is created at energies of order 10-20 MeV. These simulations indicate the importance of capturing the full self-consistent plasma dynamics in order to study preacceleration.
机译:在超新星残余冲击中,宇宙射线的预加速机制的确定是天体物理学中的一个突出问题。最近的单元中粒子(PIC)冲击模拟表明,与先前的混合动力离子,流体电子模拟相比,包含全电子动力学可产生非时间固定解。在这里,通过以高相空间分辨率运行PIC代码,我们确定了与电击的时间依赖性相关的新离子加速机制。从简单的定标论证,这些结果表明,对于超新星残余冲击的现实参数,例如大约2.5 x 10〜7 ms〜(-1)的流入速度,在10-20 MeV量级的能量下会产生加速的离子群。这些模拟表明,为了研究预加速,获取完整的自洽等离子体动力学的重要性。

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