首页> 外文会议>International Meeting on High Energy Gamma-Ray Astronomy >Discovery of VHE gamma-ray emission from the blazar 1ES 1215+303 by the MAGIC telescopes and modeling of the multi-wavelength spectrum.
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Discovery of VHE gamma-ray emission from the blazar 1ES 1215+303 by the MAGIC telescopes and modeling of the multi-wavelength spectrum.

机译:通过魔法望远镜和多波长光谱的建模发现来自Blazar 1es 1215 + 303的VHE伽马射线发射。

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We present the results of the 2011 multi-wavelength campaign on the BL Lac object 1ES 1215+303. Observations were triggered by an optical outburst and resulted in the first detection of the very high energy (VHE, > 100 GeV) gamma-ray emission from this source. We perform spectral modeling of the simultaneous and quasi-simultaneous radio, optical, X-ray, HE and VHE emission and compare it with the spectra obtained from a low emission state observed in 2010. The optical photo-polarimetric data seem to suggest that the high state could be caused by a shock traveling down the jet and colliding with a standing shock with different magnetic field orientation. The spectral energy distribution obtained with the 2011 data can be modeled with a simple one zone SSC model, but it requires extreme values for the Doppler factor or the electron energy distribution. This suggests a more complicated scenario than a simple SSC one to occur in this source.
机译:我们在BL LAC对象1ES 1215 + 303上介绍了2011年多波长活动的结果。通过光学突出触发观察,并导致首先检测来自该来源的非常高的能量(VHE,> 100 GEV)伽马射线排放。我们执行同时和准无线电,光学,X射线,HE和VHE发射的光谱建模,并将其与从2010年观察到的低排放状态获得的光谱进行比较。光学光学偏振数据似乎表明了高状态可能是由于射流沿着喷射行驶并与具有不同磁场取向的静止冲击碰撞引起的。使用2011年数据获得的光谱能量分布可以用简单的一个区域SSC模型进行建模,但是它需要多普勒因子或电子能量分布的极端值。这表明比在这个来源中发生的简单SSC更复杂的场景。

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