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Time-Dependent Spectra of Cosmic Rays Escaping from Type Ia and Core-Collapse Supernova Remnants

机译:宇宙射线的时间依赖性光谱从IA型和核心崩溃超新星残余物中逸出

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Supernova Remnants (SNRs) are thought to be the main sources of Galactic cosmic rays (CRs) up to the ”knee”. The soft CR spectrum observed at Earth, and also soft gamma-ray spectra observed from a number of SNRs interacting with molecular clouds (MCs), challenge current theories of non-linear particle acceleration that predict harder slopes. However, one should keep in mind that the CRs at Earth as well as the CRs producing gamma-rays by interaction with MCs surrounding SNRs are actually particles that escaped from the parent SNRs. During the SNR evolution the bulk of the CRs is confined within the SNR shell. The highest-energy particles leave the system continuously, while the rest of the adiabatically cooled particles are released when the SNR has sufficiently expanded and slowed down to the point that the magnetic field (MF) at the shock is no longer able to confine them. We study how the spectrum of escaped particles depends on the time-dependent acceleration history in young type-Ia and core-collapse SNRs by combining numerical simulations of SNR evolution with a solution of the CR transport equation in test-particle mode. Having explored the significance of particles accelerated at the reverse shock (RS) for the emission from the SNR, we calculate the time-dependent gamma-ray spectra from MCs illuminated by the escaping CRs.
机译:Supernova Remnants(SNRS)被认为是Galactic Cosmic Rays(CRS)的主要来源,直至“膝盖”。从地球中观察到的软CR光谱,以及从与分子云(MCS)相互作用的多个SNR观察到的软γ射线光谱,挑战预测更难的斜坡的非线性颗粒加速度的电流理论。然而,人们应该记住,通过与周围的SNR周围的MCS的相互作用产生地球的CRS以及产生伽马射线的CRS实际上是从父SNR逃离的颗粒。在SNR演变期间,CRS的大部分被限制在SNR壳内。最高能量颗粒连续离开系统,而当SNR充分膨胀并减速到震动时的磁场(MF)不再能够限制它们时,释放绝热冷却颗粒的其余部分被释放。我们研究逃逸粒子的光谱如何通过将SNR演化的数值模拟与CR传输方程的解决方案组合在测试粒子模式中结合SNR演化来取决于年轻型-IA和核心折叠SNR的时间依赖性加速历史。探索了在SNR发射的反向冲击(RS)处加速的颗粒的重要性,我们计算由逃逸CRS照射的MCS的时间依赖性伽马射线光谱。

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