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Probing cluster environments of blazars through γγ absorption

机译:通过γγ吸收探测大cluster的集群环境

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Most blazars are known to be hosted in giant elliptic galaxies, but their cluster environments have not been thoroughly investigated. Cluster environments may contain radiation fields of low-energy photons created by nearby galaxies and/or stars in the intracluster medium that produce diffuse intracluster light. These radiation fields may absorb very high energy γ?rays (VHE; E ? 100?GeV) and trigger pair cascades with further production of subsequent generations of γ?rays with lower energies via inverse Compton scattering on surrounding radiation fields leaving a characteristic imprint in the observed spectral shape. The change of the spectral shape of the blazar reflects the properties of its ambient medium. We show, however, that neither intracluster light nor the radiation field of an individual nearby galaxy can cause substantial γγ?absorption. Substantial γγ?absorption is possible only in the case of multiple, ?5, luminous nearby galaxies. This situation is not found in the local Universe, but may be possible at larger redshifts (z ? 2). Since VHE γ rays from such distances are expected to be strongly absorbed by the extragalactic background light, we consider possible signatures of γ-ray induced pair cascades by calculating the expected GeV flux which appears to be below the Fermi-LAT sensitivity even for ~10 nearby galaxies.
机译:已知大多数blazar都存在于巨大的椭圆形星系中,但尚未对其簇环境进行彻底研究。集群环境可能包含由附近星系和/或星团内部介质中的星团产生的低能光子的辐射场,这些星团和星团会产生散射的星团内部光。这些辐射场可能吸收非常高能量的γ射线(VHE; E?100?GeV)并触发对级联,并通过周围辐射场上的逆康普顿散射进一步产生具有较低能量的下一代γ射线,从而留下了特征性的烙印。观察到的光谱形状。 Blazar光谱形状的变化反映了其周围介质的特性。但是,我们表明,簇内光和附近单个星系的辐射场都不会引起大量的γγ吸收。只有在附近有多个≥5的发光星系的情况下,才能充分吸收γγ。在本地宇宙中找不到这种情况,但在较大的红移(z?2)中可能会出现这种情况。由于预计从这样的距离发出的VHEγ射线会被河外背景光强烈吸收,因此我们可以通过计算预期的GeV通量来考虑γ射线诱导的双级联的可能特征,该GeV通量甚至在〜10左右仍低于Fermi-LAT灵敏度附近的星系。

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