GeV scale dark matter and B→ K+ missing energy phenomenology in the U(1)B-L model

Abstract

We elucidate the recently observed discrepancy in the branching ratio of B+→ K+ +inv decay mode using a GeV scale scalar dark matter in an anomaly-free U(1)B-L gauge extension of the Standard Model. We constrain the new parameters by using consistency with the existing bounds on Dark matter relic density, direct detection, collider and BR(B→ K*) measured at the Belle II experiment. We investigate couplings between the mediator and the SM fermions as well as the dark matter particle. We then estimate the branching ratios of b s decay processes such as B→ (K+,K*), Bs→ (η,η'), Bs→ φ and Bc→ (Ds, Ds*) in a common parameter space, meeting the current experimental bounds of both sectors simultaneously.

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