arXiv:2605.15771·v5·High Energy Physics — Phenomenology
Precision studies of neutron decay, left-right asymmetry model of weak interaction, CP-violation and baryon asymmetry of the Universe
A.P. Serebrov🇷🇺 · O.L. Fedin🇷🇺 · O.M. Zherebtsov🇷🇺 · A.K. Fomin🇷🇺 · R.M. Samoilov🇷🇺 · N.S. Budanov🇷🇺 · V.A. Kayaikin🇷🇺
Abstract
An analysis of the latest, most accurate experimental data on neutron decay points to the need to extend the Standard Model by introducing a right vector boson admixture . A left-right asymmetry model of the weak interaction is presented, in which the sign of the mixing angle and is reversed upon transition from to . In this model, CP violation occurs due to the presence of a right vector boson admixture. The model parameter, the mixing angle, =-(2.70.9)10 is derived from neutron decay - lifetime and decay asymmetries - as well as from studies of proton decay in nuclei, the so-called superallowed - transitions. An estimate for the mass =(34060) GeV is given by the relation: from the parameter =(5.51.8)10, which is the ratio of the squares of the mass states of vector bosons. The possibility of describing CP-violation effects in neutral meson oscillations within the left-right asymmetry weak interaction model with parameters and is investigated. It is shown that within this model, CP violation effects in the decays of -mesons, -mesons, -mesons, and -mesons can be successfully described. Moreover, the sign of CP violation is opposite for particles and antiparticles, i.e., the CP violation phase is equal to /2, which corresponds to 100% CP violation. The results of calculations within the left-right asymmetry model with parameters and are confirmed by experimental results with neutral mesons. The formation of baryon asymmetry in the Universe is considered in a left-right asymmetry model of weak interaction with an admixture of a right vector boson with different signs of the mixing angle with and .
Comments: 40 pages, 24 figures