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MULTI-MESSENGER ASTRONOMY WITH CENTAURUS A

机译:与人马座的多信使天文

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摘要

We calculated for the nearest active galactic nucleus (AGN), entaurus A (Cen A), the flux of high energy cosmic rays and of accompanying secondary photons and neutrinos expected from hadronic interactions in the source. We used as two basic models for the generation of ultrahigh energy cosmic rays (UHECR) shock acceleration in the radio jet and acceleration in the regular electromagnetic field close to the core of the AGN,normalizing the UHECR flux to the observations of the Auger experiment. Here we compare the previously obtained photon fluxes with the recent data reported by the Fermi LAT and H.E.S.S. collaborations. In the case of the core model, we find good agreement both for the predicted spectral shape and the overall normalization between our earlier results and the H.E.S.S. observations for a primary proton energy dN/dE ∝ E-α with α - 2 or smaller. A broken power law with high-energy part α = -2.7 leads to photon fluxes in excess of the Fermi measurements. The energy spectrum of the photon fluxes obtained by us for the jet scenario is in all cases at variance with the H.E.S.S.and Fermi observations.
机译:我们计算了最接近的活跃星系核(AGN),牛角星A(Cen A),高能宇宙射线的通量以及源中强子相互作用预期的伴随的次级光子和中微子的通量。我们使用了两个基本模型来生成无线电射流中的超高能宇宙射线(UHECR)冲击加速度和靠近AGN核心的常规电磁场中的加速度,从而根据Auger实验的观测值对UHECR通量进行归一化。在这里,我们将先前获得的光子通量与费米LAT和H.E.S.S.合作。在核心模型的情况下,我们发现我们的早期结果与H.E.S.S.的预测光谱形状和总体归一化都有很好的一致性。 α-2或更小的初级质子能量dN / dE ∝E-α的观测值。高能部分α= -2.7的幂函数被破坏会导致光子通量超过费米测量值。在所有情况下,我们为射流场景获得的光子通量的能谱与H.E.S.S.和费米的观测值均存在差异。

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