Modular Symmetry with Weighton
Abstract
We systematically develop the weighton mechanism for natural quark and charged lepton mass hierarchies in the framework of modular symmetry with a single modulus field . The weighton is defined as a complete singlet with unit modular weight, leading to fermion mass suppression by powers of , which is the vacuum expectation value of the field scaled by a flavour cut-off. Further mass and mixing angle suppression comes from powers of the small parameter, . Assuming some fields transform as triplets under the finite modular symmetry, with general assignments for the other fields, we perform a complete analysis for the levels , expressing fermion masses and mixings in terms of powers of the small parameters and . We present two examples in detail, based on the modular group , close to the CP boundary of , which can address both fermion mass and mixing hierarchies using a weighton field.
Cite
@article{arxiv.2505.12916,
title = {Modular Symmetry with Weighton},
author = {Gui-Jun Ding and Stephen F. King and Jun-Nan Lu and Ming-Hua Weng},
journal= {arXiv preprint arXiv:2505.12916},
year = {2025}
}
Comments
81 pages, 3 figures