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Model for the high energy emission from cen a

机译:岑的高能排放模型

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摘要

Centaurus A (Cen A) is the closest active galaxy (3.8 Mpc) and presents strong activity over a wide spectral range from radio to very-high energy gamma-rays. We propose a lepto-hadronic model for the high-energy emission, assuming that particles can be shock-accelerated at the inner jets of this source. The primary electron and proton distributions are obtained in the acceleration zone, taking into account the relevant cooling processes such as synchrotron emission, inverse-Compton up-scattering of photons in both Thomson and KleinNishina regimes, protonproton and protonphoton interactions. Considering the effects of internal absorption of gamma-rays, we compare our results with current observational data obtained by HESS and Fermi. We compute also the distribution of secondary pions and muons produced by hadronic interactions. The expected high-energy neutrino signal is calculated and the possibility of detection with KM3NET or similar arrays is discussed.
机译:半人马座A(Cen A)是最接近的活跃星系(3.8 Mpc),在从无线电到超高能伽玛射线的宽光谱范围内都具有很强的活动性。我们提出了一个高能量发射的le强旋风模型,假设粒子可以在该源的内部射流处被激振。考虑到相关的冷却过程,例如同步加速器发射,汤姆逊和KleinNishina态的光子逆康普顿向上散射,质子质子和质子光子相互作用,在加速区中获得了一次电子和质子分布。考虑到伽玛射线内部吸收的影响,我们将我们的结果与HESS和Fermi获得的当前观测数据进行了比较。我们还计算了强子相互作用产生的次级介子和介子的分布。计算了预期的高能中微子信号,并讨论了使用KM3NET或类似阵列进行检测的可能性。

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