The oblique parameters in the 2HDM with Vector-Like Quarks: Confronting $M_W$ CDF-II Anomaly
Abstract
The CDF collaboration has released a new measurement of the boson mass using their complete data set with 8.8 fb in collisions. This result deviates from the Standard Model prediction by around 7. We explain how the two Higgs doublet model (2HDM) with vector-like quarks is affected by the recently discovered W boson mass. In our study, we include both theoretical constraints such as perturbative unitarity and vacuum stability as well as a number of experimental constraints. We also look into how the effective mixing angle, measured by the SLD collaboration in addition to the CDF W-boson mass, is used to determine the and parameters. In the alignment limit, we investigate the case where the lighter CP-even neutral Higgs boson of the 2HDM is the one found at the LHC and demonstrate how the parameter space of the 2HDM type II in the presence of vector-like quarks is constrained. It is found that in most cases, there is a cancellation between the 2HDM and vector-like quarks contributions, which enlarges the parameter space of both models.
Keywords
Cite
@article{arxiv.2302.07149,
title = {The oblique parameters in the 2HDM with Vector-Like Quarks: Confronting $M_W$ CDF-II Anomaly},
author = {Hamza Abouabid and Abdesslam Arhrib and Rachid Benbrik and Mohammed Boukidi and Jaouad El Falaki},
journal= {arXiv preprint arXiv:2302.07149},
year = {2024}
}
Comments
37 pages, 13 figures, more discussions added and references updated, version published in JPG