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首页> 外文期刊>The Astrophysical journal >PROMPT HIGH-ENERGY EMISSION FROM PROTON-DOMINATED GAMMA-RAY BURSTS
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PROMPT HIGH-ENERGY EMISSION FROM PROTON-DOMINATED GAMMA-RAY BURSTS

机译:质子掺杂的伽马射线爆炸引起的高能发射

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The prompt emission of gamma-ray bursts (GRBs) is widely thought to be radiation from accelerated electrons, but an appreciably larger amount of energy could be carried by accelerated protons, particularly if GRBs are the sources of ultra-high-energy cosmic rays (UHECRs). We model the expected photon spectra for such "proton-dominated" GRBs in the internal shock scenario through Monte Carlo simulations, accounting for various processes related to high-energy electrons and protons. Besides proton and muon synchrotron components, emission from photomeson-induced secondary pair cascades becomes crucial, generally enhancing the GeV-TeV and/or eV-keV photons and offering a signature of UHE protons. In some cases, it can overwhelm the primary electron component and result in GRBs peaking in the 10 MeV-1 GeV range, which may be relevant to some bursts discussed in a recent re-analysis of EGRET TASC data. The dependence of the spectra on key quantities such as the bulk Lorentz factor, magnetic field, and proton-to-electron ratio is nontrivial due to the nonlinear nature of cascading and the interplay of electron- and proton-induced components. Observations by Fermi, ground-based telescopes, and other facilities should test these expectations and provide critical constraints on the proton acceleration efficiency.
机译:普遍认为,γ射线爆发(GRB)的迅速发射是来自加速电子的辐射,但是加速质子可能携带大量能量,特别是如果GRB是超高能宇宙射线的来源( UHECR)。通过蒙特卡洛模拟,我们在内部冲击场景中对此类“质子为主”的GRB的预期光子光谱进行了建模,并考虑了与高能电子和质子有关的各种过程。除了质子和μ子同步加速器组件之外,光子介导的次级对级联的发射也变得至关重要,通常增强GeV-TeV和/或eV-keV光子并提供UHE质子的特征。在某些情况下,它可能会使主要电子成分不堪重负,并导致GRB在10 MeV-1 GeV范围内达到峰值,这可能与最近对EGRET TASC数据的重新分析中讨论的某些爆发有关。由于级联的非线性性质以及电子和质子感应成分的相互作用,光谱对关键量(例如整体洛伦兹因子,磁场和质子电子比率)的依赖性不小。费米(Fermi),地面望远镜和其他设施的观测应检验这些期望,并对质子加速效率提供关键的约束。

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