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arXiv:2402.18481·v2·High Energy Physics — Phenomenology

Towards a precision calculation of in the Standard Model III: Improved estimate of NLO contributions to the collision integral

Marco Drewes🇧🇪 · Yannis Georis🇧🇪 · Michael Klasen🇩🇪 · Luca Paolo Wiggering🇩🇪 · Yvonne Y. Y. Wong🇦🇺

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Abstract

We compute the dominant QED correction to the neutrino-electron interaction rate in the vicinity of neutrino decoupling in the early universe, and estimate its impact on the effective number of neutrino species in cosmic microwave background anisotropy observations. We find that the correction to the interaction rate is at the sub-percent level, consistent with a recent estimate by Jackson and Laine. Relative to that work we include the electron mass in our computations, but restrict our analysis to the enhanced -channel contributions. The fractional change in due to the rate correction is of order or below, i.e., about a factor of 30 smaller than that recently claimed by Cielo {\it et al.}, and below the nominal computational uncertainties of the current benchmark value of . We therefore conclude that aforementioned number remains to be the state-of-the-art benchmark for in the standard model of particle physics.

Comments: 34 pages, 8 figures, 2 tables; v2: version accepted by JCAP

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