arXiv:2404.07842·v3·High Energy Physics — Phenomenology
Approaches to photon absorption in a Lorentz invariance violation scenario
J. M. Carmona🇪🇸 · J. L. Cortés🇪🇸 · F. Rescic🇪🇸 · M. A. Reyes🇪🇸 · T. Terzić🇭🇷 · F. I. Vrban🇸🇮
Abstract
Very high-energy astrophysical gamma rays suffer a suppression of their flux along their propagation due to their interaction, through the pair-production process, with the soft photon backgrounds present in the Universe. We examine the Universe's transparency to gamma rays within a Lorentz Invariance Violation (LIV) framework, focusing on photon subluminal quadratic corrections driven by a high-energy scale. Based on an explicit calculation, we provide a new expression for the cross section that overcomes the limitations of previous approaches and refines existing constraints for the LIV scale, while we introduce a new approximation that may be useful in LIV scenarios beyond effective field theory. These improvements appear essential for setting constraints on LIV effects with future observations at ultra-high energies, where previous approximations may fall short.
Comments: 13 pages, 10 figures