English

The $Z$ decay width in the SMEFT: $y_t$ and $\lambda$ corrections at one loop

High Energy Physics - Phenomenology 2017-07-12 v3

Abstract

We calculate one loop yty_t and λ\lambda dependent corrections to ΓˉZ,Rˉf0\bar{\Gamma}_Z,\bar{R}_f^0 and the partial ZZ widths due to dimension six operators in the Standard Model Effective Field Theory (SMEFT), including finite terms. We assume CP\rm CP symmetry and a U(3)5\rm U(3)^5 symmetry in the UV matching onto the dimension six operators, dominantly broken by the Standard Model Yukawa matrices. Corrections to these observables are predicted using the input parameters {α^ew,M^Z,G^F,m^t,m^h}\{\hat{\alpha}_{ew}, \hat{M}_Z, \hat{G}_F, \hat{m}_t, \hat{m}_h\} extracted with one loop corrections in the same limit. We show that at one loop the number of SMEFT parameters contributing to the precise LEPI pseudo-observables exceeds the number of measurements. As a result the SMEFT parameters contributing to LEP data are formally unbounded when the size of loop corrections are reached until other data is considered in a global analysis. The size of these loop effects is generically a correction of order %\sim\% to leading effects in the SMEFT, but we find multiple large numerical coefficients in our calculation at this order. We use a MS\rm \overline{MS} scheme, modified for the SMEFT, for renormalization. Some subtleties involving novel evanescent scheme dependence present in this result are explained.

Keywords

Cite

@article{arxiv.1611.09879,
  title  = {The $Z$ decay width in the SMEFT: $y_t$ and $\lambda$ corrections at one loop},
  author = {Christine Hartmann and William Shepherd and Michael Trott},
  journal= {arXiv preprint arXiv:1611.09879},
  year   = {2017}
}

Comments

38 pages + refs, 11 figures, v3: Acknowledgement updated with grant numbers

R2 v1 2026-06-22T17:08:39.848Z