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Article Dans Une Revue Physical Review D Année : 2020

XENON1T solar axion and the Higgs boson emerging from the dark

Résumé

In a recent letter we proposed a new nonthermal mechanism of dark matter production based on vacuum misalignment, where both the Higgs boson and a very light pseudoscalar η emerge from the dark sector. In this paper, we identify the parameter space in a composite scenario where the light pseudoscalar can be produced in the sun and explain the XENON1T excess in electron recoil data. The model’s dark matter candidate has a mass around 50 TeV and out of range for direct detection. Testable predictions include gravitational waves at frequencies in the Hz range from a cosmological phase transition, an exotic decay Z→γ+inv with rates 4÷16×10-12 testable at a future Tera-Z collider, and an enhancement by 17÷40% of the branching ratio KL→π0+inv, not enough to explain the KOTO anomaly. All these predictions may be confirmed by future experiments.

Dates et versions

hal-02905287 , version 1 (23-07-2020)

Identifiants

Citer

Chengfeng Cai, Hong Hao Zhang, Mads T. Frandsen, Martin Rosenlyst, Giacomo Cacciapaglia. XENON1T solar axion and the Higgs boson emerging from the dark. Physical Review D, 2020, 102 (7), pp.075018. ⟨10.1103/PhysRevD.102.075018⟩. ⟨hal-02905287⟩
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