论文标题

在数月的多波长爆发中找到GEV排放区域的GEV排放区域

Locating the GeV Emission Region in the Jets of Blazars from Months-Timescale Multi-Wavelength Outbursts

论文作者

Barat, Saugata, Chatterjee, Ritaban, Mitra, Kaustav

论文摘要

众所周知,Blazars中的$γ$ - 射线发射起源于观察者指向的相对论喷气机。但是,尚不清楚GEV发射的确切位置是从中央发动机的PC小于PC,因此它可能从宽线区域(BLR)接收足够数量的光子,还是在1-100 PC范围内接收到较远的位置。前一种假设已成功地用于模拟许多Blazar的光谱能分布。但是,在某些情况下,同时检测到TEV $γ$ - 射线以及GEV爆发表明,发射区域必须在BLR之外。此外,有时已经观察到GEV爆发与通过所谓的“ VLBI核心”的扰动同时发生,该漏洞位于远离中央发动机的数十个PC。因此,$γ$ ray排放的确切位置仍然模棱两可。在这里,我们提出了一种我们开发的方法来限制发射区域的位置。我们在光曲线中同时确定了跨越了十一个大麻样本的光曲线中的同时数月的GEV和光爆发。使用理论喷射模型,我们表明,同时光学和GEV爆发的能量比很大程度上取决于发射区域的位置。比较了观察到的多波长爆发的能量耗散以及我们理论模型中模拟的耀斑的能量耗散,我们发现上述大多数爆发都超过了BLR超出中央发动机的几个PC。

It is well-known that the $γ$-ray emission in blazars originate in the relativistic jet pointed at the observers. However, it is not clear whether the exact location of the GeV emission is less than a pc from the central engine, such that it may receive sufficient amount of photons from the broad line region (BLR) or farther out at 1-100 pc range. The former assumption has been successfully used to model the spectral energy distribution of many blazars. However, simultaneous detection of TeV $γ$-rays along with GeV outbursts in some cases indicate that the emission region must be outside the BLR. In addition, GeV outbursts have sometimes been observed to be simultaneous with the passing of a disturbance through the so called "VLBI core," which is located tens of pc away from the central engine. Hence, the exact location of $γ$-ray emission remains ambiguous. Here we present a method we have developed to constrain the location of the emission region. We identify simultaneous months-timescale GeV and optical outbursts in the light curves spanning over 8 years of a sample of eleven blazars. Using theoretical jet emission models we show that the energy ratio of simultaneous optical and GeV outbursts is strongly dependent on the location of the emission region. Comparing the energy dissipation of the observed multi-wavelength outbursts and that of the simulated flares in our theoretical model we find that most of the above outbursts originate beyond the BLR at approximately a few pc from the central engine.

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