Published August 1982 | Version v1
Report

Case for neutrino oscillations

Creators

  • 1. Univ. of Florida, Gainsville

Description

The building of a machine capable of producing an intense, well-calibrated beam of muon neutrinos is regarded by particle physicists with keen interest because of its ability of studying neutrino oscillations. The possibility of neutrino oscillations has long been recognized, but it was not made necessary on theoretical or experimental grounds; one knew that oscillations could be avoided if neutrinos were massless, and this was easily done by the conservation of lepton number. The idea of grand unification has led physicists to question the existence (at higher energies) of global conservation laws. The prime examples are baryon-number conservation, which prevents proton decay, and lepton-number conservation, which keeps neutrinos massless, and therefore free of oscillations. The detection of proton decay and neutrino oscillations would therefore be an indirect indication of the idea of Grand Unification, and therefore of paramount importance. Neutrino oscillations occur when neutrinos acquire mass in such a way that the neutrino mass eigenstates do not match the (neutrino) eigenstates produced by the weak interactions. We shall study the ways in which neutrinos can get mass, first at the level of the standard SU2 x U1 model, then at the level of its Grand Unification Generalizations

Additional details

Publishing Information

Imprint Title
Proceedings of the Los Alamos neutrino workshop
Journal Page Range
p. 3-10.
Report number
LA--9358-C

Conference

Title
Los Alamos neutrino physics workshop.
Dates
8 - 12 Jun 1981.
Place
Los Alamos, NM (USA).