论文标题

NGC 3894:Fermi-Lat看到的年轻射电星系

NGC 3894: a young radio galaxy seen by Fermi-LAT

论文作者

Principe, G., Migliori, G., Johnson, T. J., D'Ammando, F., Giroletti, M., Orienti, M., Stanghellini, C., Taylor, G. B., Torresi, E., Cheung, C. C.

论文摘要

语境。根据辐射模型,射电星系可能从其进化的第一阶段产生伽马射线发射。但是,到目前为止,费米大面积望远镜(LAT)很少检测到此类星系。 目标。 NGC 3894是附近的(z = 0.0108)对象,属于紧凑型对象对象(CSO,即最紧凑,最年轻的宽宽星系),与第四fermi-lat源源中的伽马射线对应物相关。在这里,我们介绍了旨在调查其高能排放并评估其年轻性质的伽马射线和无线电带中的来源的研究。 方法。我们分析了100 MEV和300 GEV之间的10。8年的费米LAT数据,并确定了来源的光谱和可变性特征。在35年期间,多个上述非常长的基线阵列(VLBA)观察结果在5至15 GHz之间用于研究NGC 3894的无线电形态及其演变。 结果。 NGC 3894在整个时期内在伽马射线中检测到,显着性> 9 sigma,并且在年度时间表上,在伽马射线通量中未观察到明显的可变性。该频谱以平坦的功率定律($γ$ = 2.0 $ \ pm $ 0.1)和2.2 $ \ times $ 10 $ 10 $^{ - 9} $ ph cm $^{ - 2} $ s $ s $^{ - 1} $进行建模。 VLBA数据首次使我们能够高精度地限制喷气机和反喷射面的明显速度为$β_ {\ Mathrm {app,nw}} $ = 0.132 $ \ pm $ 0.004和$β_ {\ mathrm {\ mathrm {app,se,se} $ $ = 0.065.065 结论。 Fermi-Lat和VLBA的结果有利于该物体内部结构的青年场景,估计的动态年龄为59 $ \ pm $ 5年。估计的视角范围(10°<$θ$ <21°)不排除伽马射线发射的可能的类似喷气样的起源。

Context. According to radiative models, radio galaxies may produce gamma-ray emission from the first stages of their evolution. However, very few such galaxies have been detected by the Fermi Large Area Telescope (LAT) so far. Aims. NGC 3894 is a nearby (z = 0.0108) object that belongs to the class of compact symmetric objects (CSOs, i.e., the most compact and youngest radio galaxies), which is associated with a gamma-ray counterpart in the Fourth Fermi-LAT source catalog. Here we present a study of the source in the gamma-ray and radio bands aimed at investigating its high-energy emission and assess its young nature. Methods. We analyzed 10.8 years of Fermi-LAT data between 100 MeV and 300 GeV and determined the spectral and variability characteristics of the source. Multi-epoch very long baseline array (VLBA) observations between 5 and 15 GHz over a period of 35 years were used to study the radio morphology of NGC 3894 and its evolution. Results. NGC 3894 is detected in gamma-rays with a significance >9 sigma over the full period, and no significant variability has been observed in the gamma-ray flux on a yearly time-scale. The spectrum is modeled with a flat power law ($Γ$ = 2.0$\pm$0.1) and a flux on the order of 2.2 $\times$ 10$^{-9}$ ph cm$^{-2}$ s$^{-1}$. For the first time, the VLBA data allow us to constrain with high precision the apparent velocity of the jet and counter-jet side to be $β_{\mathrm{app,NW}}$ = 0.132$\pm$0.004 and $β_{\mathrm{app,SE}}$ = 0.065$\pm$0.003, respectively. Conclusions. Fermi-LAT and VLBA results favor the youth scenario for the inner structure of this object, with an estimated dynamical age of 59$\pm$5 years. The estimated range of viewing angle (10° < $θ$ < 21°) does not exclude a possible jet-like origin of the gamma-ray emission.

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