arXiv · 2405.08482
$\gamma$ rays from in-flight positron annihilation as a probe of new physics
Abstract
The $\gamma$ ray emission originating from in-flight annihilation (IA) of positrons is a powerful observable for constraining high-energy positron production from exotic sources. By comparing diffuse $\gamma$ ray observations of INTEGRAL, COMPTEL and EGRET to theoretical predictions, we set the most stringent constraints on electrophilic feebly interacting particles (FIPs), thereby proving IA as a valuable probe of new physics. In particular, we extensively discuss the case of MeV-scale sterile neutrinos, where IA sets the most stringent constraints, excluding $|U_{\mu4}|^{2} \gtrsim 10^{-13}$ and $|U_{\tau4}|^{2} \gtrsim 2\times 10^{-13}$ for sterile neutrinos mixed with $\mu$ and $\tau$ neutrinos respectively. These constraints improve existing limits by more than an order of magnitude. We briefly discuss the application of these results to a host of exotic positron sources such as dark photons, axion-like particles, primordial black holes (PBHs) and sub-GeV dark matter (DM).
Explore related subjects
Keep this discovery
Pedro De la Torre Luque, Shyam Balaji, Pierluca Carenza, Leonardo Mastrototaro. 2024-05-14. $\gamma$ rays from in-flight positron annihilation as a probe of new physics. https://arxiv.org/abs/2405.08482
Cite the original work for its findings. Save a collection to share your selection of sources.