We investigate scenarios with scalar leptoquarks that act as portals between the Standard Model and dark matter. We assume that dark matter is a scalar singlet which couples to a scalar leptoquark and the Higgs boson via the terms in the scalar potential. In addition, the leptoquark is endowed with Yukawa couplings to quarks and leptons that may address the anomalies in meson decays. We consider the annihilation cross sections to estimate the dark matter relic abundance and explore the interplay between astrophysical, collider, and flavor physics bounds on such models. In the heavy dark matter window, , the leptoquark portal becomes the dominant mechanism to explain the dark matter abundance. We find that the leptoquark Yukawa couplings, relevant for quark and lepton flavor physics, are decoupled from the dark matter phenomenology. By focussing on a scenario with a single leptoquark state, we find that relic density can only be explained when both and masses are lighter than .

Leptoquarks and real singlets: A richer scalar sector behind the origin of dark matter

D'Eramo F.;Pobbe F.;
2021

Abstract

We investigate scenarios with scalar leptoquarks that act as portals between the Standard Model and dark matter. We assume that dark matter is a scalar singlet which couples to a scalar leptoquark and the Higgs boson via the terms in the scalar potential. In addition, the leptoquark is endowed with Yukawa couplings to quarks and leptons that may address the anomalies in meson decays. We consider the annihilation cross sections to estimate the dark matter relic abundance and explore the interplay between astrophysical, collider, and flavor physics bounds on such models. In the heavy dark matter window, , the leptoquark portal becomes the dominant mechanism to explain the dark matter abundance. We find that the leptoquark Yukawa couplings, relevant for quark and lepton flavor physics, are decoupled from the dark matter phenomenology. By focussing on a scenario with a single leptoquark state, we find that relic density can only be explained when both and masses are lighter than .
2021
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11577/3400667
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