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首页> 外文期刊>The Astrophysical journal >PARAMETERIZATION OF THE ANGULAR DISTRIBUTION OF GAMMA RAYS PRODUCED BY p-p INTERACTION IN ASTRONOMICAL ENVIRONMENTS
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PARAMETERIZATION OF THE ANGULAR DISTRIBUTION OF GAMMA RAYS PRODUCED BY p-p INTERACTION IN ASTRONOMICAL ENVIRONMENTS

机译:天文环境中p-p相互作用产生的伽马射线角分布的参数化

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摘要

We present the angular distribution of gamma rays produced by proton-proton interactions in parameterized formulae to facilitate calculations in astrophysical environments. The parameterization is derived from Monte Carlo simulations of the up-to-date proton-proton interaction model and its extension by Kamae and coworkers. This model includes the logarithmically rising inelastic cross section, the diffraction dissociation process, and the Feynman scaling violation. The extension adds two baryon resonance contributions: one representing the Δ(1232) and the other representing multiple resonances around 1600 MeV/c~2. We demonstrate the use of the formulae by calculating the predicted gamma-ray spectrum for two different cases: the first is a pencil beam of protons following a power law, and the second is a fanned proton jet with a Gaussian intensity profile impinging on the surrounding material. In both cases we find the predicted gamma-ray spectrum to be dependent on the viewing angle.
机译:我们在参数化公式中显示质子-质子相互作用产生的伽马射线的角分布,以方便在天体物理环境中的计算。参数化来自最新的质子-质子相互作用模型的蒙特卡洛模拟,以及Kamae和他的同事对其的扩展。该模型包括对数上升的非弹性横截面,衍射解离过程和费曼尺度定律。该扩展增加了两个重子共振贡献:一个代表Δ(1232),另一个代表大约1600 MeV / c〜2的多重共振。我们通过计算两种情况下的预测伽马射线光谱来证明公式的使用:第一种是遵循幂律的质子笔形束,第二种是扇形质子射流,其高斯强度轮廓撞击在周围材料。在这两种情况下,我们都发现预测的伽马射线光谱取决于视角。

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