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Breaks in gamma-ray spectra of distant blazars and transparency of the Universe

机译:远距离天体的伽马射线光谱破裂和宇宙透明

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摘要

Energetic gamma rays scatter on soft background radiation when propagating through the Universe, producing electron-positron pairs (A.I. Nikishov, Sov. Phys. JETP 14, 393 (1962)). Gamma rays with energies between 100 GeV and a few TeV interact mostly with infrared background photons whose amount is poorly known experimentally but safely constrained from below by account of the contribution of observed light from known galaxies (R.C. Keenan, A.J. Barger, L.L. Cowie, and W.-H. Wang, Astrophys. J. 723, 40 (2010); arXiv: 1102.2428). The expected opacity of the intergalactic space limits the mean free path of TeV gamma rays to dozens of Megaparsecs. However, TeV photons from numerous more distant sources have been detected (S.P. Wakely and D. Horan, http://tevcat.uchicago.edu/). This might be interpreted, in each particular case, in terms of hardening of the emitted spectrum caused by presently unknown mechanisms at work in the sources (S. Archambault et al. (VERITAS and Fermi LAT Collaborations), Astrophys. J. 785, L16 (2014); arXiv: 1403.4308). Here we show that this interpretation is not supported by the analysis of the ensemble of all observed sources. In the frameworks of an infrared-background model with the lowest opacity (R.C. Gilmore, R.S. Somerville, J.R. Primack, and A. Dominguez, Mon. Not. Roy. Astron. Soc. 422, 3189 (2012); arXiv: 1104.0671), we reconstruct the emitted spectra of distant blazars and find that upward spectral breaks appear precisely at those energies where absorption effects are essential. Since these energies are very different for similar sources located at various distances, we conclude that the breaks are artefacts of the incorrect account of absorption and, therefore, the opacity of the Universe for gamma rays is overestimated even in the most conservative model. This implies that some novel physical or astrophysical phenomena should affect long-distance propagation of gamma rays. A scenario in which a part of energetic photons is converted to an inert new particle in the vicinity of the source and reconverts back close to the observer (M. Simet, D. Hooper, and P. Serpico, Phys. Rev. D 77, 063001 (2008); arXiv: 0712.2825; M. Fairbairn, T. Rashba, and S. Troitsky, Phys. Rev. D 84, 125019 (2011); arXiv:0901.4085) does not contradict our results. This new axion-like particle appears in several extensions of the Standard Model of particle physics (J. Jaeckel and A. Ringwald, Ann. Rev. Nucl. Part. Sci. 60, 405 (2010); arXiv: 1002.0329) and may constitute the dark matter (P. Arias et al., JCAP 1206, 013 (2012); arXiv: 1201.5902).
机译:当穿过宇宙传播时,高能伽马射线会散射在柔和的背景辐射上,产生电子-正电子对(A.I. Nikishov,Sov。Phys。JETP 14,393(1962))。能量在100 GeV到几TeV之间的伽玛射线主要与红外背景光子相互作用,红外光子的量在实验上是未知的,但是由于已知星系(RC Keenan,AJ Barger,LL Cowie和W.-H. Wang,Astrophys。J.723,40(2010); arXiv:1102.2428)。星系间空间的预期不透明度将TeV伽马射线的平均自由程限制为数十兆帕。但是,已经检测到来自许多更远源的TeV光子(S.P. Wakely和D. Horan,http://tevcat.uchicago.edu/)。在每种特定情况下,这可能是由于源中目前未知的机制引起的发射光谱的硬化而解释的(S. Archambault等人(VERITAS和Fermi LAT合作),Astrophys。J. 785,L16)。 (2014); arXiv:1403.4308)。在这里,我们表明对所有观察到的源的整体分析不支持这种解释。在具有最低不透明度的红外背景模型的框架中(RC Gilmore,RS Somerville,JR Primack和A. Dominguez,Mon。Not。Roy。Astron。Soc。422,3189(2012); arXiv:1104.0671),我们重建了遥远的blazar的发射光谱,发现向上的光谱断裂恰好出现在吸收效应至关重要的那些能量处。由于这些能量对于位于不同距离的相似光源而言是非常不同的,因此我们得出结论,这些断裂是不正确的吸收解释的假象,因此,即使在最保守的模型中,对于伽玛射线,宇宙的不透明度也被高估了。这意味着某些新颖的物理或天文学现象应影响伽玛射线的远距离传播。一种场景,其中一部分高能光子在源附近转换为惰性新粒子,并在靠近观察者的位置重新转换回原位(M. Simet,D。Hooper和P. Serpico,Phys。Rev. D 77, 063001(2008); arXiv:0712.2825; M.Fairbairn,T.Rashba和S.Troitsky,Phys.Rev.D 84,125019(2011); arXiv:0901.4085)与我们的结果没有矛盾。这种新的类似轴突的粒子出现在粒子物理标准模型的几个扩展中(J. Jaeckel和A. Ringwald,《核化学年鉴》第60卷,第405页(2010年); arXiv:1002.0329),并且可能构成暗物质(P.Arias等人,JCAP 1206,013(2012); arXiv:1201.5902)。

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