论文标题

在倾斜高马赫数冲击的扩散冲击加速度

Diffusive shock acceleration at oblique high Mach number shocks

论文作者

van Marle, Allard Jan, Bohdan, Artem, Morris, Paul J., Pohl, Martin, Marcowith, Alexandre

论文摘要

当前的宇宙射线范式(CR)起源指出,大部分银河CR是由超新星残留物产生的。超新星爆炸后,超新星喷射与星际介质的相互作用导致通过扩散冲击加速度(DSA)导致CR加速的冲击。我们使用粒子中的粒子(PIC)模拟和组合的PIC-MAGNETOHEDRADYNARINIC(PIC-MHD)技术来研究DSA是否可以在倾斜的高马赫数冲击中发生。使用PIC方法,我们遵循冲击的形成,并确定与DSA相关的粒子的分数。然后,通过此结果,我们使用PIC-MHD模拟对冲击的血浆和磁场的大规模结构进行建模,并找出反射的颗粒是否可以产生上游湍流并触发DSA。我们发现该过程在斜冲击中的可行性很大程度上取决于Alfgenic Mach数,并且DSA过程更有可能在高马赫数冲击下触发。

The current paradigm of cosmic ray (CR) origin states that the most part of galactic CRs is produced by supernova remnants. The interaction of supernova ejecta with the interstellar medium after supernova's explosions results in shocks responsible for CR acceleration via diffusive shock acceleration (DSA). We use particle-in-cell (PIC) simulations and a combined PIC-magnetohydrodynamic (PIC-MHD) technique to investigate whether DSA can occur in oblique high Mach number shocks. Using the PIC method, we follow the formation of the shock and determine the fraction of the particles that gets involved in DSA. Then, with this result, we use PIC-MHD simulations to model the large-scale structure of the plasma and the magnetic field surrounding the shock and find out whether or not the reflected particles can generate the upstream turbulence and trigger DSA. We find that the feasibility of this process in oblique shocks depends strongly on the Alfvenic Mach number, and the DSA process is more likely triggered at high Mach number shocks.

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