arXiv:2609.07661·v1·High Energy Physics — Phenomenology
Gravitational Wave in an Neutrino Model with Generalised CP
Pulakesh Borah🇮🇳 · Mrinal Kumar Das🇮🇳
Abstract
We extend the Standard Model with an flavor symmetry and generalized CP (GCP) symmetry, realized through two flavon triplets that spontaneously break and generate the observed lepton mixing pattern. A new -singlet flavon couples to one of these triplets through a complex quartic interaction that breaks GCP and fixes the reactor mixing angle; this same coupling biases the domain walls formed when that triplet breaks . A global fit to oscillation data reproduces all mixing angles and mass splittings, predicting a maximal Dirac CP phase of and an effective Majorana mass near , testable by upcoming neutrinoless double-beta-decay () experiments. The same coupling generates a stochastic gravitational-wave background peaking in the pulsar-timing-array and LISA bands, with peak frequency and amplitude predicted to scale as and , a falsifiable link between neutrino oscillation and gravitational-wave (GW) observations.