Non-forward radiative corrections to electron-carbon scattering
High Energy Physics - Phenomenology
2023-03-23 v1 Nuclear Experiment
Abstract
Radiative corrections to elastic scattering represent an important part of the interpretation of electron-induced nuclear reactions at small energy transfers, where they make for a dominant part of background. Here we present and validate a new event generator for mimicking QED radiative processes in electron-carbon scattering that exactly calculates the coherent sum of the Bethe-Heitler amplitudes for the leading diagrams and can be reliably employed for a more robust determination of inelastic cross-sections.
Cite
@article{arxiv.2303.12196,
title = {Non-forward radiative corrections to electron-carbon scattering},
author = {M. Mihovilovič and A. B. Weber and P. Achenbach and M. Bajec and T. Beranek and J. Beričič and J. C. Bernauer and D. Bosnar and R. Böhm and M. Cardinali and L. Correa and L. Debenjak and A. Denig and M. O. Distler and A. Esser and M. I. Feretti Bondy and H. Fonvieille and J. M. Friedrich and I. Friščić and K. Griffioen and M. Hoek and S. Kegel and D. G. Middleton and H. Merkel and U. Müller and L. Nungesser and J. Pochodzalla and M. Rohrbeck and S. Sánchez Majos and B. S. Schlimme and M. Schoth and F. Schulz and C. Sfienti and S. Širca and S. Štajner and Y. Stöttinger and M. Thiel and A. Tyukin and M. Vanderhaeghen and M. Weinriefer},
journal= {arXiv preprint arXiv:2303.12196},
year = {2023}
}