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Blazar VHE spectral alterations induced by photon–ALP oscillations

机译:光子-ALP振荡引起的Blazar VHE光谱变化

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Prompted by the increasing interest of axion-like particles (ALPs) for very high energy (VHE) astrophysics, we have considered a full scenario for the propagation of a VHE photon/ALP beam emitted by a BL Lac and reaching us in the light of the most up-to-date astrophysical information and for energies up to above 100 TeV. During its trip, the beam - generated in a small region of a BL Lac jet - crosses a variety of magnetic structures in very different astronomical environments: the BL Lac jet, the host elliptical galaxy, the extragalactic space, and the Milky Way. We have taken an effort to model all these magnetic fields in the most realistic fashion and using a new model developed by us concerning the extragalactic magnetic field. Assuming an intrinsic spectrum with a power law exponentially truncated at a fixed cutoff energy, we have evaluated the resulting observed spectra of Markarian 501, the extreme BL Lac 1ES 0229+200, and a similar source located at z = 0.6 up to above 100 TeV. We obtain interesting results: The model with photon-ALP oscillations possesses features (spectral energy oscillatory behaviour and photon excess above 20 TeV) that can be tested by gamma-ray observatories such as CTA, HAWC, GAMMA 400, LHAASO, TAIGA-HiSCORE, and HERD. In addition, our ALP can be detected in dedicated laboratory experiments such as the upgrade of ALPS II at DESY, the planned IAXO and STAX experiments, as well as with other techniques developed by Avignone and collaborators.
机译:轴突状颗粒(ALP)对超高能(VHE)天体物理学的兴趣日益增加,促使我们考虑了BL Lac发射的VHE光子/ ALP光束的传播并据此到达我们的完整方案。最新的天体物理信息,并且能量高达100 TeV以上。在其旅行过程中,在BL Lac射流的一小部分中产生的光束在非常不同的天文环境中穿过各种磁性结构:BL Lac射流,宿主椭圆星系,银河外空间和银河系。我们已努力以最现实的方式对所有这些磁场建模,并使用我们针对银河外磁场开发的新模型。假设幂定律在固定的截止能量下被截断的本征光谱,我们已经评估了Markarian 501,极端BL Lac 1ES 0229 + 200和位于z = 0.6直至100 TeV以上的类似源的观测光谱。我们获得有趣的结果:具有光子-ALP振荡的模型具有特征(光谱能量振荡行为和光子超过20 TeV的光子),可以通过CTA,HAWC,GAMMA 400,LHAASO,TAIGA-HiSCORE,和牧羊人。此外,我们的ALP可以在专门的实验室实验中检测到,例如DESY升级ALPS II,计划的IAXO和STAX实验以及Avignone和合作者开发的其他技术。

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