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◆ Astronomy and Astrophysics2026-04-08· Physics

Acceleration of cosmic rays at the post-adiabatic shocks of supernova remnants

O. Petruk, R. Bandiera, T. Kuzyo, R. Brose, A. Ingallinera

原始摘要(英文原文)· Original abstract
When a supernova remnant (SNR) interacts with the dense material of an interstellar cloud, its shock wave decelerates rapidly, and the post-shock temperature drops to levels that permit efficient cooling of the shocked plasma. At this stage, the shock enters the post-adiabatic phase of its evolution. During this phase, the internal structure of the SNR undergoes significant changes, particularly in the immediate post-shock region, at spatial scales relevant to cosmic ray acceleration. Once the shock enters the post-adiabatic regime, the efficiency of diffusive shock acceleration increases due to a higher plasma compression, to a change in the direction of the advection velocity, and to an increased rate of momentum gain. As a result, the momentum spectrum of relativistic particles hardens, deviating from a pure power law at high energies. Particles could reach higher maximum values compared to classical predictions. We highlight the dynamics of post-adiabatic flows in SNRs, study their impact on particle acceleration, and present supporting observational evidence in the radio band.
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Acceleration of cosmic rays at the post-adiabatic shocks of supernova remnants — 科研速览 Science Skim