论文标题
Bl lac对象的子TEV伽马射线光谱中的吸收特征
Absorption features in sub-TeV gamma-ray spectra of BL Lac objects
论文作者
论文摘要
伽马射线中伽马射线的生产位点与它们与活性银核周围光子场相互作用密切相关。在本文中,我们讨论了一种间接方法,该方法可能有助于通过分析其伽马射线频谱来揭示BL LAC对象中环境结构的存在。伽玛射线通过与黑洞不同距离的结构通过$γγ$配对的产生与相应的光子场相互作用,并在其光谱能量分布中产生吸收特征。与推定的宽线区域的相互作用只有在其生产地点非常接近中央发动机的情况下,才可以减少伽马射线的通量。但是,如果喷气光子与在Parsec尺度上延伸的狭窄区域产生的光学紫外线光子浴相互作用,则随之而来的$γγ$过程可能会导致在几百个GEV下可检测到的吸收特征。在光谱达到TEV能量的来源中,促进了这种吸收特征的检测,尤其是HBL和EHBL(极端的Blazars)可能代表了研究该主题的出色探针。我们讨论了一个极端的大弹药的最新观察结果,名为2WHSP J073326.7+515354(或PGC 2402248),该观察显示了其伽马射线频谱中这种吸收特征的证据和光谱中狭窄的发射线,这表明其大型环境中存在狭窄线区域的存在。最后,我们讨论了BL LAC对象光谱中的子TEV吸收特征如何影响其宽带建模,并最终代表了一种强大的诊断工具来限制伽马射线生产地点和喷气环境。
The production site of gamma rays in blazars is closely related to their interaction with the photon fields surrounding the active galactic nucleus. In this paper, we discuss an indirect method that may help to unveil the presence of ambient structures in BL Lac objects through the analysis of their gamma-ray spectrum. Gamma rays, passing through structures at different distances from the black hole, interact via $γγ$ pair production with the corresponding photon fields and produce absorption features in their spectral energy distribution. An interaction with a putative broad-line region may reduce the gamma-ray flux only if its production site were very close to the central engine. However, if jet photons interact with a bath of optical-UV seed photons produced by a narrow-line region extended over the parsec scale, the consequent $γγ$ process may cause absorption features detectable at a few hundreds GeV. The detection of such absorption features is facilitated in sources with spectra reaching TeV energies, and specifically HBLs and EHBLs (extreme blazars) may represent exceptional probes to investigate this topic. We discuss recent observations of an extreme blazar named 2WHSP J073326.7+515354 (or PGC 2402248), which shows evidence of such an absorption feature in its gamma-ray spectrum and narrow emission lines in the optical spectrum, suggesting the presence of narrow-line regions in its large-scale environment. Finally, we discuss how sub-TeV absorption features in the spectra of BL Lac objects may affect their broadband modeling, and eventually represent a powerful diagnostic tool to constrain the gamma-ray production site and the jet environment.