U (1) Axial as a Force between Neturinos
DOI:
https://doi.org/10.9734/bpi/nupsr/v14/11541DKeywords:
Neutrinos, gauge force, dark energy, elementary particlesAbstract
We show that when left and right handed neutrinos a have majorana mass matrix, local guage invariance produces a fifth force acting between chiral charges on neutrinos and quarks. The force is a carried by a massless (or low mass) 1-spin guage boson, we call an axiphoton. The force is caused by a U(1) axial guage symmetry in the way as the electromagnetic force. We expect from renormalisation that the force constant, \(\alpha\)a is about 1/60 of the electromagnetic force constant \(\alpha\). We show that this force can explain dark energy. Our model predicts decaying right handed neutrinos in the eV - MeV range, and explain the heating of the solar corona. Finally we show that the Tajmar [1] experiment detecting a force due to a rotating superconductor, may be detection of our force.