论文标题

部分可观测时空混沌系统的无模型预测

X-ray intraday variability of the TeV blazar Mrk 421 with {\it XMM-Newton}

论文作者

Noel, A Priyana, Gaur, Haritma, Gupta, Alok C., Wierzcholska, Alicja, Ostrowski, Michal, Dhiman, Vinit, Bhatta, Gopal

论文摘要

高度可变的Markarian 421是一个明亮的高同步子能量峰值峰值,显示出广泛的无特征性非热谱,使其成为我们研究盘内通量和光谱变化的良好候选者。我们分析了其使用Epic-PN仪器进行17年以上的X射线观察,以探测盘中变异性能。 0.3-10.0 keV的光子能带及其子频段,软带0.3-2.0 keV和硬2.0-10.0 keV。为了检查通量变异性,已经计算出分数变异性幅度和最小变异时间尺度。我们还通过研究每个观察结果的硬度比以及使用离散相关函数并检查归一化光曲线的两个能带之间的相关性来探测光谱变异性。已经研究了从这些方法获得的参数,以实现任何相关性或非随机趋势。从这项工作中,我们推测了射流中可能的粒子加速度和发射过程的约束,以更好地理解涉及湍流行为的过程。两个子频段之间的正离散相关函数表明,同一电子群体在两个频段中光子发射中的作用。磁通变化的参数与光谱变化参数与亚能带中的滞后参数之间的相关性提供了对发射过程的任何建模的约束。

Highly variable Markarian 421 is a bright high synchrotron energy peaked blazar showing wide featureless non-thermal spectrum making it a good candidate for our study of intraday flux and spectral variations over time. We analyse its X-ray observations of over 17 years taken with the EPIC-PN instrument to probe into the intraday variability properties. The photon energy band of 0.3 - 10.0 keV, and its sub-bands, soft 0.3-2.0 keV and hard 2.0-10.0 keV. To examine flux variability, fractional variability amplitude and the minimum variability timescale have been calculated. We also probed into the spectral variability by studying hardness ratio for each observation and the correlation between the two energy bands using discrete correlation function and inspecting the normalized light curves. The parameters obtained from these methods have been studied for any correlation or non-random trends. From this work, we speculate on the constraints for possible particle acceleration and emission processes in the jet, for better understanding of the processes involving a turbulent behaviour except of shocks. A positive discrete correlation function between the two sub-bands indicates the role of the same electron population in the emission of photons in the two bands. The correlation between the parameters of flux variability and parameters of spectral variation and lags in sub-energy bands provide the constraints to be considered for any modelling of emission processes.

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