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Particle spectra from acceleration at forward and reverse shocks of young Type Ia Supernova Remnants

机译:来自Ia型超新星残余的正向和反向冲击的加速度的粒子光谱

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We study cosmic-ray acceleration in young Type Ia Supernova Remnants (SNRs) by means of test-particle diffusive shock acceleration theory and 1-D hydrodynamical simulations of their evolution. In addition to acceleration at the forward shock, we explore the particle acceleration at the reverse shock in the presence of a possible substantial magnetic field, and consequently the impact of this acceleration on the particle spectra in the remnant. We investigate the time evolution of the spectra for various time-dependent profiles of the magnetic field in the shocked region of the remnant. We test a possible influence on particle spectra of the Alfvénic drift of scattering centers in the precursor regions of the shocks. In addition, we study the radiation spectra and morphology in a broad band from radio to gamma-rays. It is demonstrated that the reverse shock contribution to the cosmic-ray particle population of young Type Ia SNRs may be significant, modifying the spatial distribution of particles and noticeably affecting the volume-integrated particle spectra in young SNRs. In particular spectral structures may arise in test-particle calculations that are often discussed as signatures of non-linear cosmic-ray modification of shocks. Therefore, the spectrum and morphology of emission, and their time evolution, differ from pure forward-shock solutions.
机译:我们通过测试粒子扩散激波加速理论和其演化的一维流体动力学模拟,研究年轻的Ia型Ia超新星遗迹(SNR)中的宇宙射线加速。除了在正向冲击时的加速度之外,我们还研究了在存在可能的强磁场的情况下在反向冲击时的粒子加速度,并因此研究了该加速度对残余物中粒子​​光谱的影响。我们研究了残余物受激区域中各种随时间变化的磁场分布图的时间演化。我们测试了在冲击的前体区域中散射中心的Alfvénic漂移的粒子光谱的可能影响。此外,我们研究了从无线电到伽马射线的宽频带内的辐射光谱和形态。结果表明,反向冲击对年轻的Ia型SNR的宇宙射线粒子群的贡献可能很大,从而改变了粒子的空间分布并显着影响了年轻SNR的体积积分粒子光谱。特别是在测试粒子计算中可能会出现光谱结构,通常将其作为冲击的非线性宇宙射线修改的特征进行讨论。因此,发射的光谱和形态以及它们的时间演化与纯正激波解不同。

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