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首页> 外文期刊>Astronomy and astrophysics >PKS 1510-089: a rare example of a flat spectrum radio quasar with a very high-energy emission
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PKS 1510-089: a rare example of a flat spectrum radio quasar with a very high-energy emission

机译:PKS 1510-089:具有极高能量发射的平面频谱类星体的罕见示例

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Context. The blazar PKS 1510-089 is an example of flat spectrum radio quasars. High-energy emissions from this class of objects are believed to have been produced by IC radiation with seed photons originating from the broad line region. In such a paradigm, a lack of very high-energy emissions is expected because of the Klein-Nishina effect and strong absorption in the broad line region. Recent detection of at least three such blazars by Cherenkov telescopes has forced a revision of our understanding of these objects. Aims. We have aimed to model the observed spectral energy distribution of PKS 1510-089 from the high-energy flares in March 2009, during which very high-energy emission were also detected by H.E.S.S. Methods. We have applied the single-zone internal shock scenario to reproduce the multiwavelength spectrum of PKS 1510-089. We have followed the evolution of the electrons as they propagate along the jet and emit synchrotron and IC radiation. We have considered two sources of external photons: the dusty torus and the broad line region. We have also examined the effects of the gamma-gamma absorption of the high-energy photons both in the AGN environment (the broad line region and the dusty torus), as well as while traveling over cosmological distances: the extragalactic background light. Results. We have successfully modeled the observed spectrum of PKS 1510-089. In our model, the highest energy emission is the result of the Comptonization of the infrared photons from the dusty torus, thus avoiding Klein-Nishina regime, while the bulk of the emissions in the GeV range may still be dominated by the Comptonization of radiation coming from the broad line region.
机译:上下文。 blazar PKS 1510-089是平面频谱无线电类星体的一个示例。此类物体的高能发射被认为是由IC辐射产生的,其中种子光子来自宽线区域。在这样的范式中,由于克莱因-尼希纳效应和宽线区域的强吸收性,预计将缺少非常高的能量排放。切伦科夫望远镜最近至少检测到了三种这样的天体,这迫使我们对这些天体的理解有了修改。目的我们的目标是对2009年3月高能火炬观测到的PKS 1510-089的光谱能量分布进行建模,在此期间H.E.S.S.方法。我们已经应用了单区域内部冲击场景来再现PKS 1510-089的多波长光谱。当电子沿着射流传播并发射同步加速器和IC辐射时,我们一直在追踪电子的演化。我们考虑了外部光子的两种来源:尘土圆环和宽线区域。我们还研究了在AGN环境(宽线区域和尘土飞扬的圆环)中以及在宇宙距离内旅行时高能光子的γ-γ吸收的影响:银河外背景光。结果。我们已经成功地模拟了PKS 1510-089的观察光谱。在我们的模型中,最高的能量发射是来自尘土圆环的红外光子的质子化的结果,从而避免了克莱因·西希纳政权,而GeV范围内的大部分发射仍可能由辐射的质子化控制来自粗线区域。

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