English

Explicit rephasing to Kobayashi-Maskawa representation and fundamental phase structure of CP violation

High Energy Physics - Phenomenology 2026-03-11 v2

Abstract

In this letter, we construct an explicit rephasing transformation that converts an arbitrary unitary matrix into the Kobayashi--Maskawa (KM) parameterization and identify all independent CP phases in the mixing matrix as the arguments of its matrix elements. Furthermore, by applying this rephasing transformation to the fermion diagonalization matrices UfU^{f}, we show that the Majorana phases are represented by fermion-specific phases δKMν,e\delta^{\nu, e}_{\rm KM} and their relative phases. In particular, by neglecting the 3-1 elements U31ν,eU_{31}^{\nu ,e} of the diagonalization matrices for the two fermions, the KM phase δKM\delta_{\rm KM} is concisely expressed by fermion-specific rephasing invariants involving two relative phases δKM=arg[1+(U21eU21ν/U11eU11ν)]+arg[U32eU32ν/U22eU22ν]\delta_{\rm KM} = \arg \left [1 + ({U^{e * }_{21} U^{\nu}_{21} / U^{e * }_{11} U^{\nu}_{11} }) \right ] + \arg \left [ - { U_{32}^{e *} U_{32}^{\nu} / U^{e * }_{22} U^{\nu}_{22} } \right] .

Keywords

Cite

@article{arxiv.2601.09389,
  title  = {Explicit rephasing to Kobayashi-Maskawa representation and fundamental phase structure of CP violation},
  author = {Masaki J. S. Yang},
  journal= {arXiv preprint arXiv:2601.09389},
  year   = {2026}
}

Comments

7 pages, will be published in PTEP