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arXiv:1710.02129·v1·High Energy Physics — Phenomenology

Coherent Conversion at Next-to-Leading Order

Anthony Bartolotta🇺🇸 · Michael J. Ramsey-Musolf🇺🇸

Abstract

We analyze next-to-leading order (NLO) corrections and uncertainties for coherent conversion . The analysis is general but numerical results focus on , which will be used in the Mu2E experiment. We obtain a simple expression for the branching ratio in terms of Wilson coefficients associated with possible physics beyond the Standard Model and a set of model-independent parameters determined solely by Standard Model dynamics. For scalar-mediated conversion, we find that NLO two-nucleon contributions can significantly decrease the branching ratio, potentially reducing the rate by as much as 50%. The pion-nucleon -term and quark masses give the dominant sources of parametric uncertainty in this case. For vector-mediated conversion, the impact of NLO contributions is considerably less severe, while the present theoretical uncertainties are comparable to parametric uncertainties.

Comments: 36 pages, 2 figures, 7 tables

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