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首页> 外文期刊>Astrophysics and space science >Gamma ray signatures of ultra high energy cosmic ray accelerators: electromagnetic cascade versus synchrotron radiation of secondary electrons
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Gamma ray signatures of ultra high energy cosmic ray accelerators: electromagnetic cascade versus synchrotron radiation of secondary electrons

机译:超高能宇宙射线加速器的伽玛射线特征:电磁级联与二次电子的同步加速器辐射

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摘要

We discuss the possibility of observing ultra high energy cosmic ray sources in high energy gamma rays. Protons propagating away from their accelerators produce secondary electrons during interactions with cosmic microwave background photons. These electrons start an electromagnetic cascade that results in a broad band gamma ray emission. We show that in a magnetized Universe (B greater than or similar to 10(-12) G) such emission is likely to be too extended to be detected above the diffuse background. A more promising possibility comes from the detection of synchrotron photons from the extremely energetic secondary electrons. Although this emission is produced in a rather extended region of size similar to 10 Mpc, it is expected to be point-like and detectable at GeV energies if the intergalactic magnetic field is at the nanogauss level.
机译:我们讨论了在高能伽玛射线中观测超高能宇宙射线源的可能性。离开加速器传播的质子在与宇宙微波背景光子相互作用期间会产生二次电子。这些电子启动电磁级联,导致宽带伽马射线发射。我们显示出,在一个磁化的宇宙中(B大于或类似于10(-12)G),这种发射很可能会扩展到无法检测到的漫射背景之上。从极高能的二次电子中检测到同步加速器光子是一个更有希望的可能性。尽管这种发射是在相当大的类似于10 Mpc的区域中产生的,但如果星际磁场处于纳米高斯水平,则有望在GeV能量下呈点状并可以检测到。

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