论文标题

MRK 421连续13天的活动解释

An Explanation for 13 consecutive days activities of Mrk 421

论文作者

Zheng, Y. G., Yang, C. Y., Kang, Shi-Ju, Bai, J. M.

论文摘要

令人惊讶的是,在MRK 421的活性时期内,在同步子光谱分布组件的峰位置上迁移的事实令人惊讶,并在X射线和GEV-TEV $γ$射线频段处伴随着一个孤儿。大弹性发射的几何解释和标准冲击或随机加速模型难以再现这些观察到的行为。 The present paper introduces a linear acceleration by integrating the reconnection electric field into the particle transport model for the observed behaviours of Mrk 421. We note that the strong evidence for evolution of multi-wavelength spectral energy distribution characteristic by shifting the peak frequency, accompanying with an orphan flaring at the X-ray and GeV-TeV $γ$-ray bands provides an important electrostatic acceleration diagnostic in blazar jet.假设有合适的模型参数,我们将模拟结果应用于2010年3月MRK 421的13天耀斑事件,集中在多波长光谱分布分布的演变上,这是通过移动峰值频率来转移的。显然,电场和磁场强度的比率在同步子光谱能量分布分量的峰值频率的时间演化中起重要作用。我们建议通过转移峰值频率的多波长光谱能量分布特征的演化是合理的。基于模型结果,我们发出的是,同步子光谱分布组件的峰值频率可能表示Blazars的临时特征,而不是永久性的特征。

It is surprising to find a fact for migration in the peak positions of synchrotron spectra energy distribution component during in the activity epochs of Mrk 421, accompanying with an orphan flaring at the X-ray and GeV-TeV $γ$-ray bands. A geometric interpretation and standard shock or stochastic acceleration models of blazar emission have difficulty reproducing these observed behaviours. The present paper introduces a linear acceleration by integrating the reconnection electric field into the particle transport model for the observed behaviours of Mrk 421. We note that the strong evidence for evolution of multi-wavelength spectral energy distribution characteristic by shifting the peak frequency, accompanying with an orphan flaring at the X-ray and GeV-TeV $γ$-ray bands provides an important electrostatic acceleration diagnostic in blazar jet. Assuming suitable model parameters, we apply the results of the simulation to the 13-day flaring event in 2010 March of Mrk 421, concentrating on the evolution of multi-wavelength spectral energy distribution characteristic by shifting the peak frequency. It is clear that the ratio of the electric field and magnetic field strength plays an important role in temporal evolution of the peak frequency of synchrotron spectral energy distribution component. We suggest the electrostatic acceleration responsible for the evolution of multi-wavelength spectral energy distribution characteristic by shifting the peak frequency is reasonable. Based on the model results, we issue that the peak frequency of the synchrotron spectral energy distribution component may denote a temporary characteristic of blazars, rather than a permanent one.

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