research

Bounds on the Coupling of the Majoron to Light Neutrinos from Supernova Cooling

Abstract

We explore the role of Majoron (JJ) emission in the supernova cooling process, as a source of upper bound on neutrino-Majoron coupling. We show that the strongest upper bound on the coupling to νe\nu_e comes from the νeνe→J\nu_e\nu_e \to J process in the core of a supernova. We also find bounds on diagonal couplings of the Majoron to νμ(τ)νμ(τ)\nu_{\mu(\tau)}\nu_{\mu(\tau)} and on off-diagonal νeνμ(τ)\nu_e \nu_{\mu (\tau)} couplings in various regions of the parameter space. We discuss the evaluation of the cross-section for four-particle interactions (νν→JJ\nu \nu \to JJ and νJ→νJ\nu J \to \nu J). We show that these are typically dominated by three-particle sub-processes and do not give new independent constraints.Comment: 34 pages, Version to appear in Phys. Rev.

    Similar works

    Available Versions

    Last time updated on 27/12/2021