Supersymmetric relativistic quantum mechanics in time-domain

Asenjo F.A.; Hojman S.A.; Moya-Cessa H.M.; Soto-Eguibar F.

Keywords: domain, Neutrino oscillation; Supersymmetry; Time

Abstract

A supersymmetric relativistic quantum theory in the temporal domain is developed for bi-spinor fields satisfying the Dirac equation. The simplest time-domain supersymmetric theory can be postulated for fields with time-dependent mass, showing an equivalence with the bosonic supersymmetric theory in time-domain. Solutions are presented and they are used to produce probability oscillations between mass states. As an application of this idea, we study the two-neutrino oscillation problem, showing that flavour state oscillations may emerge from the supersymmetry originated by the time-dependence of the unique mass of the neutrino.

Más información

Título según SCOPUS: Supersymmetric relativistic quantum mechanics in time-domain
Título de la Revista: Physics Letters, Section A: General, Atomic and Solid State Physics
Volumen: 450
Editorial: Elsevier B.V.
Fecha de publicación: 2022
Idioma: English
DOI:

10.1016/j.physleta.2022.128371

Notas: SCOPUS