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Engine-driven Relativistic Supernovae as Sources of Ultra High Energy Cosmic Rays

机译:作为超高能宇宙射线的发动机驱动的相对论超新星

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Understanding the origin of the highest energy cosmic rays is a crucial step in probing new physics at energies unattainable by terrestrial accelerators. Their sources remain an enigma half a century after their discovery. They must be accelerated in the local universe as otherwise interaction with cosmic background radiations would severely deplete the flux of protons and nuclei at energies above the Greisen-Zatsepin-Kuzmin (GZK) limit. Hypernovae, nearby GRBs, AGNs and their flares have all been suggested and debated in the literature as possible sources. Type Ibc supernovae have a local sub-population with mildly relativistic ejecta which are known to be sub-energetic GRBs or X-Ray Flashes for sometime and more recently as those with radio afterglows but without detected GRB counterparts, such as SN 2009bb. In this work we measure the size-magnetic field evolution, baryon loading and energetics of SN 2009bb using its radio spectra obtained with VLA and GMRT. We show that the engine-driven SNe lie above the Hillas line and they can explain the characteristics of post-GZK UHECRs.
机译:了解最高能源宇宙射线的起源是探测陆地加速器无法达到的新物理学的关键步骤。他们的来源仍然是他们发现后半个世纪的谜。它们必须在本地宇宙中加速,因为与宇宙背景辐射的相互作用将严重消耗Greisen-Zatsepin-Kuzmin(GZK)限制的能量上的质子和核​​的助熔剂。在文献中,在文献中,术语,附近的Grbs,Agns及其耀斑都在文献中得到了夸张。 IBC SuperNovae具有局部亚群,具有温和的相对论的喷射物,已知是子能量GGBS或X射线的某个时间,并且最近作为具有无线电且没有检测到GRB对应的GRB对应物,例如SN 2009BB。在这项工作中,我们使用使用VLA和GMRT获得的无线电光谱测量SN 2009BB的大小磁场演进,Baryon装载和能量学。我们展示了发动机驱动的SNE位于Hillas系列之上,他们可以解释GZK UheCrs的特征。

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