Right-handed weak currents in neutrinoless β β decays and ton scale ββ detectors

Abstract

Right handed weak-currents (RHCs) in the left-right (L-R) symmetric model for neutrinoless double beta decays (DBDs) of both the 0+~~0+ and 0+~~2+ transitions are discussed from both theoretical and experimental view points. <λ> and <η>-terms are related by <λ>/<η> ≈ β, which is constrained in the regions of 1-60 for SUSY grand unified theories (GUTs) and of 1-165 for non-SUSY GUTs. The enhancement mechanisms of the <η> term over the <λ> term in the 0+ transition are shown, and the isobar contribution to the NME for the transition to the 2+ state is found to be of the order of 20\% of the NME with the quenched weak coupling. The new and interesting RHC regions of <λ>≈ 5×10-8 and <η>≈ 1.5× 10-10 are shown to be exclusively explored by measuring both the ββ and γ rays associated with the ground and excited DBDs by means of the ton-scale DBD detectors for the IH (inverted hierarchy) -masses. The actual RHCs to be studied depend on the RHC NMEs.

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