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arXiv:2306.14579·v1·High Energy Physics — Phenomenology

Hill-top inflation from Dai-Freed anomaly in the standard model -- A solution to the iso-curvature problem of the axion dark matter

Masahiro Kawasaki🇯🇵 · Tsutomu T. Yanagida🇨🇳

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Abstract

The discrete symmetry in the standard model (SM) with three right-handed neutrinos is free from the Dai-Freed anomaly. Motivated by this symmetry, we constructed a topological inflation model consistent with all known constraints and observations. However, we assumed a specific inflaton potential in the previous work. In this paper we extend the inflaton potential in a more general form allowed by the discrete gauge symmetry and show that consistent hilltop inflation is realized. We find that the Hubble parameter can be smaller than GeV so that the isocurvature fluctuations of the axion dark matter are sufficiently suppressed. Furthermore, the running of the spectral index can be as large as which will be tested in future CMB observations. Since this discrete acts on the SM, the inflaton can couple to pairs of the right-handed neutrinos and hence the reheating temperature can be high as GeV, producing the cosmic baryon asymmetry naturally through the thermal leptogenesis.

Comments: 11 pages, 5 figures

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