• Medientyp: E-Artikel
  • Titel: Tachyonic field theory and neutrino mass running
  • Beteiligte: Jentschura, Ulrich D. [Verfasser:in]
  • Erschienen: 17.07.2012
  • Erschienen in: Central European journal of physics ; 10(2012), 4, Seite 749-762
  • Sprache: Englisch
  • DOI: 10.2478/s11534-012-0031-1
  • Identifikator:
  • Schlagwörter: Cosmic rays ; Gauge field theories ; Neutrino, muon, pion, and other elementary particles ; Relativistic wave equations ; Renormalization group methods ; Theory of quantized fields
  • Entstehung:
  • Anmerkungen: Online erschienen: 17.07.2012
  • Beschreibung: In this paper three things are done. (i) We investigate the analogues of Cerenkov radiation for the decay of a superluminal neutrino and calculate the Cerenkov angles for the emission of a photon through a W loop, and for a collinear electron-positron pair, assuming the tachyonic dispersion relation for the superluminal neutrino. The decay rate of a freely propagating neutrino is found to depend on the shape of the assumed dispersion relation, and is found to decrease with decreasing tachyonic mass of the neutrino. (ii)We discuss a few properties of the tachyonic Dirac equation (symmetries and plane-wave solutions), which may be relevant for the description of superluminal neutrinos seen by the OPERA experiment, and discuss the calculation of the tachyonic propagator. (iii) In the absence of a commonly accepted tachyonic field theory, and in view of an apparent “running” of the observed neutrino mass with the energy, we write down a model Lagrangian, which describes a Yukawa-type interaction of a neutrino coupling to a scalar background field via a scalar-minus-pseudoscalar interaction. This constitutes an extension of the standard model. If the interaction is strong, then it leads to a substantial renormalization-group “running” of the neutrino mass and could potentially explain the experimental observations.
  • Zugangsstatus: Freier Zugang