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- W4313447616 abstract "We investigate how many problems of particle physics and cosmology that the recently proposed model framework $ - $ called Technically Natural Higgs (TNH) $ - $ can remedy. In this paper, we will endeavour to answer the following six open questions: the electroweak (EW) naturalness problem, the generation of neutrino masses and their flavour mixing, the nature of the inflaton, the matter-antimatter asymmetry problem, the origin of dark matter, and the strong CP problem. In this work, we will consider various possible solutions to these problems for three inflation scenarios (Higgs, Starobinsky and scale-independent inflation) in the minimal TNH model, where the Higgs is a mixture of an elementary and a composite state with a compositeness scale much larger than the EW scale. Traditionally, this requires an unnatural small vacuum misalignment, but recently TNH models with compositeness scale up to the Planck scale assisted by a novel mechanism have been proposed. This mechanism is based on softly breaking a global $ mathbb{Z}_2 $ symmetry by technically natural small vacuum misalignment, dynamically triggering the EW symmetry breaking and fermion mass generation. With this mechanism, we will show that a scale-invariant version of the minimal TNH model with a compositeness scale of $ mathcal{O}(10^{12}) $ GeV can both provide a technically natural 125 GeV Higgs boson, scotogenic neutrinos, scale-invariant inflation and QCD axion dark matter, which altogether dynamically induces the Planck scale and may answer all the six above-mentioned open questions." @default.
- W4313447616 created "2023-01-06" @default.
- W4313447616 creator A5027793573 @default.
- W4313447616 date "2022-12-30" @default.
- W4313447616 modified "2023-10-18" @default.
- W4313447616 title "Addressing Six Standard Model Problems with Technically Natural Higgs Models" @default.
- W4313447616 doi "https://doi.org/10.48550/arxiv.2212.14809" @default.
- W4313447616 hasPublicationYear "2022" @default.
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