Quantum field formalism of the nucleon--k/sub $alpha$/-boson model for hadrons.
A. N. Kushnirenko · OSTI OAI (U.S. Department of Energy Office of Scientific and Technical Information) · 1972
The dynamic tool of a new model of hadrons is the ordinary quantum theory of a field describing the behavior of a system of interacting spin and pscudo-vector fields. Based on a nucleon-K /sub alpha -/ boson model of hadrons, a single theory of elementary particles can be built which includes the lepton theory. By this can be explained the whole combination of elementary particles with observation of tho three-field system: unit spin-K/sub alpha / boson-electromagnetic. The proposed lepton theory inherently explains the presence of two neutrinos; the proton, neutron, electron, muon, and both neutrinos are different states of unitary phenomena. An equation is presented which indicates that the field mass of the muon is generated by interaction of the muon with the vacuum of the electromagnetic field and with that of the K/sub alpha /-boson field. Therefore the muon mass should be greater than the electron mass. The lepton theory considered explains the weak reaction occurring both with and without changes in singularity. Both weak and strong interactions are responsible for K/sub alpha /-bosons. (tr-auth)