New determination of the production cross section for $\gamma$ rays in the Galaxy
Luca Orusa, Mattia Di Mauro, Fiorenza Donato, Michael Korsmeier

TL;DR
This paper presents new analytical functions for the gamma-ray production cross section in hadronic collisions, crucial for interpreting gamma-ray data from the Galaxy with high precision.
Contribution
It introduces updated, comprehensive cross section models for gamma-ray production from cosmic-ray interactions, including multiple meson and baryon channels, with quantified uncertainties.
Findings
Cross sections for gamma-ray production are accurate within 10% below 10 GeV.
Predictions cover gamma-ray energies from 10 MeV to 100 TeV.
Provides accessible numerical tables and scripts for the community.
Abstract
The flux of rays is measured with unprecedented accuracy by the Large Area Telescope from 100 MeV to almost 1 TeV. In the future, the Cherenkov Telescope Array will have the capability to measure photons up to 100 TeV. To accurately interpret this data, precise predictions of the production processes, specifically the cross section for the production of photons from the interaction of cosmic-ray protons and helium with atoms of the ISM, are necessary. In this study, we determine new analytical functions describing the Lorentz-invariant cross section for -ray production in hadronic collisions. We utilize the limited total cross section data for production channels and supplement this information by drawing on our previous analyses of charged pion production to infer missing details. In this context, we highlight the need for new data on …
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Taxonomy
TopicsParticle physics theoretical and experimental studies · Dark Matter and Cosmic Phenomena · Astrophysics and Cosmic Phenomena
