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Left-right symmetry and leading contributions to neutrinoless double beta decay

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arxiv 2009.01257 v1 pith:WQGBTAAZ submitted 2020-09-02 hep-ph nucl-exnucl-th

classification hep-phnucl-exnucl-th
keywords betadecaycontributionleft-rightmixingratecontributionsdouble
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We study the impact of the mixing (LR mixing) between the standard model $W$ boson and its hypothetical, heavier right-handed parter $W_R$ on the neutrinoless double beta decay ($0\nu\beta\beta$-decay) rate. Our study is done in the minimal left-right symmetric model assuming type-II dominance scenario with charge conjugation as the left-right symmetry. We then show that the $0\nu\beta\beta$-decay rate may be dominated by the contribution proportional to this LR mixing, which at the hadronic level induces the leading-order contribution to the interaction between two pions and two charged leptons. The resulting long-range pion exchange contribution can significantly enhance the decay rate compared to previously considered short-range contributions. Finally, we find that even if future cosmological experiments rule out the inverted hierarchy for neutrino masses, there are still good prospects for a positive signal in the next generation of $0\nu\beta\beta$-decay experiments.

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  1. Neutrinoless double beta decay with light sterile neutrinos: the contact terms

    hep-ph 2024-12 conditional novelty 7.0 of 10

    The short-range nuclear contact term in neutrinoless double beta decay depends on sterile neutrino mass more strongly than previously assumed, lengthening predicted half-lives by up to about a factor of six.

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