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首页> 外文期刊>The Astrophysical journal >SPECTRAL EVOLUTION OF PKS 2155-304 OBSERVED WITH BeppoSAX DURING AN ACTIVE GAMMA-RAY PHASE
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SPECTRAL EVOLUTION OF PKS 2155-304 OBSERVED WITH BeppoSAX DURING AN ACTIVE GAMMA-RAY PHASE

机译:在活动伽马射线相期间用BeppoSAX观测到的PKS 2155-304的光谱演化

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摘要

We present the results of BeppoSAX observations of PKS 2155-304 during an intense gamma-ray flare. The source was in a high X-ray state. A temporal analysis of the data reveals a tendency of the amplitude of variations to increase with energy and the presence of a soft lag with a timescale of the order 10~3 s. A curved continuum spectrum, with no evidence of spectral features, extends up to approx 50 keV, while there is indication of a flatter component emerging at higher energies, consistent with the interpretation of the broadband spectral energy distribution (SED) due to synchrotron self-Compton emission from a single region. Notably, the fitting of the SED with such a model is consistent with an interpretation of the detected soft lag due to radiative cooling, supporting the idea that radiation losses play an important role in variability. The observed shifts of the SED peaks between the lowest and highest flux levels can be accounted for by an increase of the "break" energy in the relativistic particle spectrum. The model predicts emission at TeV energies in good agreement with the recently reported detection.
机译:我们介绍了强烈的伽马射线耀斑期间,PKS 2155-304的BeppoSAX观测结果。源处于高X射线状态。数据的时间分析表明,变化幅度随能量的增加而增加,并且存在一个软滞后,其时标为10〜3 s。弯曲的连续谱,没有谱特征的证据,延伸到大约50 keV,同时有迹象表明在较高能量下出现了更平坦的分量,这与由于同步加速器自振引起的宽带谱能量分布(SED)的解释一致。来自单个区域的康普顿排放。值得注意的是,SED与这种模型的拟合与对由于辐射冷却导致的检测到的软滞后的解释是一致的,从而支持了辐射损失在可变性中起重要作用的观点。 SED峰在最低和最高通量水平之间观察到的偏移可以通过相对论粒子谱中“断裂”能的增加来解释。该模型预测TeV能量下的发射与最近报道的检测非常吻合。

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