The electron EDM in the decoupling limit of the aligned 2HDM
Abstract
We discuss model-independent contributions to the electron EDM, focusing on those contributions emerging from a heavy scalar sector linearly realized. To provide a concrete new physics realization, we investigate the aligned 2HDM in the decoupling limit. We point out that logarithmically enhanced contributions generated from Barr-Zee diagrams with a fermion loop are present in the aligned 2HDM, an effect encoded in the decoupling limit by effective dimension-6 operators, through the mixing of four-fermion into dipole operators. The same large logarithms are absent in specific 2HDMs where a symmetry is enforced, which thus controls the basis of effective operators relevant for calculating new physics contributions to EDMs. In other words, the symmetry acts as a suppression mechanism. In the aligned 2HDM these contributions are proportional to sources of CP violation that are potentially large, and absent in presence of the symmetry. We then investigate the impact on the electron EDM of this extended set of free parameters.
Keywords
Cite
@article{arxiv.2504.00579,
title = {The electron EDM in the decoupling limit of the aligned 2HDM},
author = {Juan Manuel Dávila and Anirban Karan and Emilie Passemar and Antonio Pich and Luiz Vale Silva},
journal= {arXiv preprint arXiv:2504.00579},
year = {2025}
}
Comments
7 pages, 2 figures, Contribution to the Proceedings of the 9th Symposium on Prospects in the Physics of Discrete Symmetries (DISCRETE 2024), 2-6 December 2024, Ljubljana, Slovenia