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First multi-wavelength campaign on the gamma-ray-loud active galaxy IC?310

机译:伽玛射线大声环形银河IC上的第一个多波长活动?310

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Context. The extragalactic very-high-energy gamma-ray sky is rich in blazars. These are jetted active galactic nuclei that are viewed at a small angle to the line-of-sight. Only a handful of objects viewed at a larger angle are so far known to emit above 100?GeV. Multi-wavelength studies of such objects up to the highest energies provide new insights into the particle and radiation processes of active galactic nuclei. Aims. We aim to report the results from the first multi-wavelength campaign observing the TeV detected nucleus of the active galaxy IC?310, whose jet is observed at a moderate viewing angle of 10°?20° . Methods. The multi-instrument campaign was conducted between 2012 November and 2013 January, and involved observations with MAGIC, Fermi , INTEGRAL, Swift , OVRO, MOJAVE and EVN. These observations were complemented with archival data from the AllWISE and 2MASS catalogs. A one-zone synchrotron self-Compton model was applied to describe the broadband spectral energy distribution. Results. IC?310 showed an extraordinary TeV flare at the beginning of the campaign, followed by a low, but still detectable TeV flux. Compared to previous measurements in this energy range, the spectral shape was found to be steeper during the low emission state. Simultaneous observations in the soft X-ray band showed an enhanced energy flux state and a harder-when-brighter spectral shape behavior. No strong correlated flux variability was found in other frequency regimes. The broadband spectral energy distribution obtained from these observations supports the hypothesis of a double-hump structure. Conclusions. The harder-when-brighter trend in the X-ray and VHE emission, observed for the first time during this campaign, is consistent with the behavior expected from a synchrotron self-Compton scenario. The contemporaneous broadband spectral energy distribution is well described with a one-zone synchrotron self-Compton model using parameters that are comparable to those found for other gamma-ray-emitting misaligned blazars.
机译:语境。紫外线非常高能量的伽马射线天空丰富的布拉齐。这些被喷射有活跃的银核,以小角度观察到视线。迄今为止,只有少数几个以更大的角度观看的物体才能发射100?GEV。对最高能量的这些物体的多波长研究为活性银核的颗粒和辐射过程提供了新的见解。目标。我们的目标是从观察到的第一多波长活动的结果,观察到的TEV检测到的活性星系ICα310的核,其射流在10°Δ20°的中等视角下观察到。方法。多乐器运动是在2012年11月和2013年1月之间进行的,并参与了魔术,费米,整体,斯威夫特,卵巢,莫哈韦和EVN的观察。这些观察结果与来自均和2mass目录的档案数据互补。应用单区同步rotron Self-Compton模型来描述宽带光谱能量分布。结果。 IC?310在竞选开始时展示了一个非凡的Tev眩光,其次是低,但仍然可检测到的Tev助焊剂。与先前的测量相比,在该能量范围内,发现光谱形状在低排放状态期间陡峭。软X射线带中的同时观察显示增强的能量通量状态和更难的光谱形状行为。在其他频率制度中发现了不强相关的助焊剂可变性。从这些观察结果获得的宽带光谱能量分布支持双驼峰结构的假设。结论。在此广告系列中首次观察到X射线和VHE排放中越来越亮的趋势,与同步康康康顿情景中预期的行为一致。使用与其他伽马射线发射未对齐的布拉泽相当的参数,使用与其他伽马射线发射不对列的参数相当的参数进行了很好的宽带光谱能量分布。

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