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Non-minimal flavour violation in A₄times SU(5) SUSY GUTs with smuon assisted dark matter

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arxiv 1812.07463 v2 pith:N4IZPHJY submitted 2018-12-18 hep-ph

Non-minimal flavour violation in A₄times SU(5) SUSY GUTs with smuon assisted dark matter

classification hep-ph
keywords flavourparametersviolatingscaleviolationdarkleptonmatter
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study CP-conserving non-minimal flavour violation in $A_4 \times SU(5)$ inspired Supersymmetric Grand Unified Theories (GUTs), focussing on the regions of parameter space where dark matter is successfully accommodated due to a light right-handed smuon a few GeV heavier than the lightest neutralino. In this region of parameter space we find that some of the flavour-violating parameters are constrained by the requirement of the dark matter relic density, due to the delicate interplay between the smuon and neutralino masses. By scanning over GUT scale flavour violating parameters, constrained by low-energy quark and lepton flavour violating observables, we find a striking difference in the results in which individual parameters are varied to those where multiple parameters are varied simultaneously, where the latter relaxes the constraints on flavour violating parameters due to cancellations and/or correlations. Since charged lepton-flavour violation provides the strongest constraints within a GUT framework, due to relations between quark and lepton flavour violation, we examine in detail a prominent correlation between some of the flavour violating parameters at the GUT scale consistent with the stringent lepton flavour violating process $\mu \rightarrow e \gamma$. We also examine the relation between GUT scale and low scale flavour violating parameters, for both quarks and leptons, and show how the usual expectations may be violated due to the correlations when multiple parameters are varied simultaneously.

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  1. $A_4$ flavor symmetric model in SUSY SU(5) GUT

    hep-ph 2019-07 unverdicted novelty 3.0

    An A4-symmetric SUSY SU(5) GUT model realizes running quark and charged lepton masses at ~10^16 GeV via 24 Higgs and flavons and numerically matches neutrino oscillation results.