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首页> 外文期刊>The Astrophysical journal >Variable Very High Energy γ-Ray Emission from Markarian 501
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Variable Very High Energy γ-Ray Emission from Markarian 501

机译:Markarian 501的可变超高能γ射线发射

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The blazar Mrk 501 was observed at energies above 0.10 TeV with the MAGIC Telescope from 2005 May through July. The high sensitivity of the instrument enabled the determination of the flux and spectrum of the source on a night-by-night basis. Throughout our observational campaign, the flux from Mrk 501 was found to vary by an order of magnitude. Intranight flux variability with flux-doubling times down to 2 minutes was observed during the two most active nights, namely, June 30 and July 9. These are the fastest flux variations ever observed in Mrk 501. The ~20 minute long flare of July 9 showed an indication of a 4 ± 1 minute time delay between the peaks of F(0.25 TeV) and F(1.2 TeV), which may indicate a progressive acceleration of electrons in the emitting plasma blob. The flux variability was quantified for several energy ranges and found to increase with the energy of the γ-ray photons. The spectra hardened significantly with increasing flux, and during the two most active nights, a spectral peak was clearly detected at 0.43 ± 0.06 and 0.25 ± 0.07 TeV, respectively, for June 30 and July 9. There is no evidence of such a spectral feature for the other nights at energies down to 0.10 TeV, thus suggesting that the spectral peak is correlated with the source luminosity. These observed characteristics could be accommodated in a synchrotron self-Compton framework in which the increase in γ-ray flux is produced by a freshly injected (high energy) electron population.
机译:从2005年5月到7月,用MAGIC望远镜观测到能量超过0.10 TeV的Blazar Mrk 501。仪器的高灵敏度使得能够逐夜确定源的通量和光谱。在我们的观测活动中,发现Mrk 501的通量变化了一个数量级。在两个最活跃的夜晚,即6月30日和7月9日,观察到通量加倍时间降低到2分钟的夜内通量变化。这是Mrk 501中观察到的最快的通量变化。7月9日大约20分钟长的耀斑结果表明在F(<0.25 TeV)和F(> 1.2 TeV)峰之间存在4±1分钟的时间延迟,这可能表明电子在发射的等离子体团中逐渐加速。在几个能量范围内对通量变异性进行了量化,发现其随γ射线光子的能量而增加。光谱随着通量的增加而显着硬化,并且在两个最活跃的夜晚,分别在6月30日和7月9日清楚地在0.43±0.06和0.25±0.07 TeV处检测到一个光谱峰。没有证据表明这种光谱特征在其他夜晚,能量下降到0.10 TeV时,这表明光谱峰与光源的光度相关。这些观察到的特性可以容纳在同步加速器自康普顿框架中,在该框架中,由新注入的(高能)电子总体产生了γ射线通量的增加。
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