English

The electron EDM in the decoupling limit of the aligned 2HDM

High Energy Physics - Phenomenology 2025-04-02 v1

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 Z2\mathcal Z_2 symmetry is enforced, which thus controls the basis of effective operators relevant for calculating new physics contributions to EDMs. In other words, the Z2\mathcal Z_2 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 Z2\mathcal Z_2 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