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Modular Flavor Symmetries and Fermion Mass Hierarchies

Modular Flavor Symmetries and Fermion Mass Hierarchies

来源:Arxiv_logoArxiv
英文摘要

We investigate fermion mass hierarchies in models with modular flavor symmetries. Several key conclusions arise from the observation that the determinants of mass matrices transform as 1-dimensional vector-valued modular forms. We demonstrate that, under some fairly general assumptions, achieving hierarchical fermion masses requires the vacuum expectation value of the modulus $τ$ to be located near one of the critical points, $i$, $i\infty$, or $ω$. We also revisit the universal near-critical behavior around these points and classify the resulting mass hierarchies for the critical points $i$ and $ω$. We compare the traditional Froggatt--Nielsen mechanism with its modular variant. The knowledge and boundedness of Fourier and Taylor coefficients are crucial to the predictive power of modular flavor symmetries.

Mu-Chun Chen、Xueqi Li、Xiang-Gan Liu、Michael Ratz

物理学

Mu-Chun Chen,Xueqi Li,Xiang-Gan Liu,Michael Ratz.Modular Flavor Symmetries and Fermion Mass Hierarchies[EB/OL].(2025-06-29)[2025-07-25].https://arxiv.org/abs/2506.23343.点此复制

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