We systematically study potential effects of Beyond the Standard Model physics in the e+e−→ZH process. To this end, we include all relevant dimension-6 Standard Model Effective Field Theory operators and work to next-to-leading order (NLO) accuracy in the electroweak coupling. We consider both polarized and unpolarized electron and positron beams and present results for s=240,365 and 500GeV, emphasizing contributions where the NLO predictions differ significantly from the leading order results. At NLO, a sensitivity arises to operators that do not contribute at tree level, such as the Higgs tri-linear coupling, CP-violating operators, and dimension-6 operators involving the top quark, among many others. We compare the prospects of future e+e− colliders to explore these new physics effects with existing measurements from the LHC, electron EDMs (for CP violating operators), and Z pole measurements.
@article{arxiv.2409.11466,
title = {The $e^+ e^- \rightarrow Z H$ Process in the SMEFT Beyond Leading Order},
author = {Konstantin Asteriadis and Sally Dawson and Pier Paolo Giardino and Robert Szafron},
journal= {arXiv preprint arXiv:2409.11466},
year = {2025}
}
Comments
45 pages, 22 figures, 8 tables (version accepted for publication in JHEP)