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High-energy emission and absorption in cygnus X-1

机译:天鹅座X-1的高能发射和吸收

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摘要

The high-mass microquasar Cygnus X-1 has been detected during a flaring state at very high energies, E > 200 GeV. The observation was performed by the Atmospheric Cherenkov Telescope MAGIC. It constitutes the first experimental evidence of very-high energy (VHE) emission produced by a Galactic stellar-mass black hole. The observed signal was detected in coincidence with an X-ray flare. The gamma-ray flare occurred when the compact object was located behind the companion star with respect to the line of sight (superior conjunction of the compact object). In this configuration the absorption of VHE photons by annihilation with the stellar photons is expected to be maximum. This suggests that the emission has been originated far above the compact object. The energy spectrum is well fitted by a relatively soft power-law. We present a model for the absorption and the emission of VHE gamma-rays in Cyg X-1. Detailed calculations of the gamma-ray opacity due to pair creation are provided and used to establish constraints on the emitting region. We propose that the high energy flare was the result of the interaction between the jet and a very dense clump from the stellar wind.
机译:在非常高的能量(E> 200 GeV)的扩口状态下,已经检测到了高质量的微类天鹅天鹅座X-1。观测是由切伦科夫大气望远镜MAGIC进行的。它构成了银河系恒星质量黑洞产生的极高能量(VHE)发射的第一个实验证据。观察到的信号与X射线耀斑相吻合。当紧凑物体相对于视线(紧凑物体的高级合体)位于伴星后面时,就会发生伽马射线耀斑。在这种配置中,通过用恒星光子an灭,VHE光子的吸收有望达到最大。这表明发射已经远远超过了紧凑的物体。相对较软的幂律很好地拟合了能谱。我们提出了在Cyg X-1中吸收和发射VHE伽马射线的模型。提供了由于成对产生而导致的伽马射线不透明度的详细计算,并用于建立对发射区域的约束。我们认为,高能火炬是喷射流与恒星风中非常密集的团簇之间相互作用的结果。

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