首页> 外文期刊>The Astrophysical journal >SYNCHROTRON EMISSION FROM VERY HIGH ENERGY GAMMA-RAY-INDUCED PAIR CASCADES IN ACTIVE GALACTIC NUCLEUS ENVIRONMENTS
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SYNCHROTRON EMISSION FROM VERY HIGH ENERGY GAMMA-RAY-INDUCED PAIR CASCADES IN ACTIVE GALACTIC NUCLEUS ENVIRONMENTS

机译:在活跃的银河系原子核环境中,高能伽马射线诱发的双级联产生的同步辐射

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The discovery of very high energy (VHE; E 100 GeV) γ-ray emission from intermediate- and low-frequency-peaked blazars suggests that γγ absorption and pair cascading might occur in these objects. In previous papers, we investigated the Compton emission from VHE γ-ray-induced pair cascades, deflected by moderate magnetic fields, in a largely model-independent way, and demonstrated that this emission can explain the Fermi fluxes and spectra of the radio galaxies Cen A and NGC?1275. In this paper, we describe a generalization of our Monte Carlo cascade code to include the angle-dependent synchrotron output from the cascades, allowing for the application to situations with non-negligible magnetic fields, leading to potentially observable synchrotron signatures, but still not dominating the radiative energy loss of cascade particles. We confirm that the synchrotron radiation from the cascades in NGC?1275 and Cen A is negligible for the parameters used in our previous works. We demonstrate that the magnetic field cannot be determined from a fit of the cascade emission to the γ-ray spectrum alone, and the degeneracy can only be lifted if the synchrotron emission from the cascades is observed as well. We illustrate this fact with the example of NGC?1275. We point out that the cascade synchrotron emission may produce spectral features in the same energy range in which the big blue bump is observed in the spectral energy distributions of several blazars, and may make a non-negligible contribution to this feature. We illustrate this idea with the example of 3C 279.
机译:从中频和低频峰值的blazars发出的非常高能量(VHE; E> 100 GeV)γ射线的发现表明,在这些物体中可能发生γ吸收和成对级联。在先前的论文中,我们以很大程度上与模型无关的方式研究了由VHEγ射线诱导的成对叶栅的Compton辐射,该辐射在中等磁场的作用下发生了偏转,并且在很大程度上与模型无关。 A和NGC?1275。在本文中,我们描述了蒙特卡洛级联代码的一般化,以包括级联中与角度相关的同步加速器输出,从而允许将其应用于磁场不可忽略的情况,从而导致潜在可观察到的同步加速器签名,但仍不占主导地位级联粒子的辐射能量损失。我们确认,NGC?1275和Cen A中级联的同步加速器辐射对于我们先前工作中使用的参数可以忽略不计。我们证明,不能仅通过级联发射与γ射线光谱的拟合来确定磁场,并且只有同时观察到来自级联的同步加速器发射,才能消除简并性。我们以NGC?1275为例说明这一事实。我们指出,级联同步加速器发射可能会产生相同的能量范围内的光谱特征,在该能量范围内,几种酒渣的光谱能量分布中都观察到了大的蓝色凸起,并且可能对该特征做出不可忽略的贡献。我们以3C 279为例说明这个想法。

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