English

A model calculation of the CKM matrix

High Energy Physics - Phenomenology 2025-02-04 v1

Abstract

We propose a strategy to compute the CKM matrix based on the conjecture, recently put forward in the literature, according to which elementary particle masses are not generated like in the standard Higgs scenario, but emerge from a non-perturbative mechanism triggered by the presence in the fundamental Lagrangian of ``irrelevant'' chiral breaking operators of the Wilson type of dimension d6d\geq 6 scaled by d4d-4 powers of the UV cutoff. Non-perturbatively generated quark masses have the form mqCq(α)ΛRGIm_q\sim C_q(\alpha) \Lambda_{RGI} where ΛRGI\Lambda_{RGI} is the RGI scale of the theory and Cq(α)C_q(\alpha) is a function of the gauge couplings. For the (elementary) fermion qq the Cq(α)C_q(\alpha) leading behaviour is Cq(α)=\mboxO(α1+(dq4)/2)C_q(\alpha)={\mbox{O}}(\alpha^{1+(d_q-4)/2}). The dependence of the gauge coupling power behaviour from the dimension dqd_q of the Wilson-like operators associated with the fermion qq can be exploited to construct hierarchically organized up and down ''proto-mass matrices'' for ''proto-flavours'', the diagonalization of which yields flavoured quarks with definite masses and a first principle construction of the CKM matrix.

Keywords

Cite

@article{arxiv.2502.01233,
  title  = {A model calculation of the CKM matrix},
  author = {Maurizio Firrotta and Giancarlo Rossi},
  journal= {arXiv preprint arXiv:2502.01233},
  year   = {2025}
}

Comments

6 pages

R2 v1 2026-06-28T21:30:24.178Z