论文标题
伽马射线宇宙学和基本物理测试
Gamma-ray Cosmology and Tests of Fundamental Physics
论文作者
论文摘要
伽马射线在宇宙学距离上的传播是GEV和TEV能量的广泛理论和观察性研究的主题。由于宇宙光学和红外背景上的电子和正电子的产生,宇宙网络中伽马射线的平均自由路径受到100 GEV的限制。电子和正面子在磁场上旋转时在层次介质中冷却,这可能会导致其全局加热或产生低能量的次级伽马射线。幸存的宇宙学之旅的伽马射线能量分布具有观察到的吸收特征,这些特征衡量了在宇宙时间比宇宙时间的发射率,限制了$λ$ CDM宇宙学的距离尺度,并限制了相互作用横截面的变化。竞争性约束尤其属于宇宙恒星形成史以及量子重力和弦理论所期望的现象,例如与假设的轴心样粒子的耦合或违反洛伦兹的不变性。最新的理论和观察性进步可瞥见新一代伽玛射线观测者即将打开的多波长和多通信路径。
The propagation of gamma-rays over cosmological distances is the subject of extensive theoretical and observational research at GeV and TeV energies. The mean free path of gamma-rays in the cosmic web is limited above 100 GeV due to the production of electrons and positrons on the cosmic optical and infrared backgrounds. Electrons and positrons cool in the intergalactic medium while gyrating in its magnetic fields, which could cause either its global heating or the production of lower-energy secondary gamma-rays. The energy distribution of gamma-rays surviving the cosmological journey carries observed absorption features that gauge the emissivity of baryonic matter over cosmic time, constrain the distance scale of $Λ$CDM cosmology, and limit the alterations of the interaction cross section. Competitive constraints are in particular placed on the cosmic star-formation history as well as on phenomena expected from quantum gravity and string theory, such as the coupling to hypothetical axion-like particles or the violation of Lorentz invariance. Recent theoretical and observational advances offer a glimpse of the multi-wavelength and multi-messenger path that the new generation of gamma-ray observatories is about to open.