论文标题
在超新星残留物中建模颗粒加速度和非热发射
Modeling particle acceleration and non-thermal emission in supernova remnants
论文作者
论文摘要
根据最受欢迎的宇宙射线起源模型(CRS),超新星残留物(SNR)是CRS加速的站点。电磁光谱之间的观察结果通过检测非热发射的检测来支持这张图片,而非热发射与高能电子或质子 - 普罗氏蛋白相互作用引起的同步构成或反式康普顿辐射兼容。这些关于日益增长的数量和质量承诺的观察结果将揭示CRS加速的许多方面,并需要越来越准确的工具来解释。在这里,我们展示了SNR的多维MHD模型,包括由于加速CRS的后反应而对冲击动态的影响以及非热发射的合成,对研究CRS加速度的特征非常有用,并对高能量颗粒加速机制构成约束。这些模型已用于解释各种频段(无线电,X射线和$γ$ -Ray)中SNR的准确观察,并从它们中提取有关CRS加速的关键信息。
According to the most popular model for the origin of cosmic rays (CRs), supernova remnants (SNRs) are the site where CRs are accelerated. Observations across the electromagnetic spectrum support this picture through the detection of non-thermal emission that is compatible with being synchrotron or inverse Compton radiation from high energy electrons, or pion decay due to proton-proton interactions. These observations of growing quantity and quality promise to unveil many aspects of CRs acceleration and require more and more accurate tools for their interpretation. Here, we show how multi-dimensional MHD models of SNRs, including the effects on shock dynamics due to back-reaction of accelerated CRs and the synthesis of non-thermal emission, turned out to be very useful to investigate the signatures of CRs acceleration and to put constraints on the acceleration mechanism of high energy particles. These models have been used to interpret accurately observations of SNRs in various bands (radio, X-ray and $γ$-ray) and to extract from them key information about CRs acceleration.