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      Searches for other vacua II: A new Higgstory at the cosmological collider

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          Abstract

          The detection of an oscillating pattern in the bispectrum of density perturbations could suggest the existence of a high-energy second minimum in the Higgs potential. If the Higgs field resided in this new minimum during inflation and was brought back to the electroweak vacuum by thermal corrections during reheating, the coupling of Standard Model particles to the inflaton would leave its imprint on the bispectrum. We focus on the fermions, whose dispersion relation can be modified by the coupling to the inflaton, leading to an enhanced particle production during inflation even if their mass during inflation is larger than the Hubble scale. This results in a large non-analytic contribution to non-Gaussianities, with an amplitude \(f_{\rm NL}\) as large as \(100\) in the squeezed limit, potentially detectable in future 21-cm surveys. Measuring the contributions from two fermions would allow us to compute the ratio of their masses, and to ascribe the origin of the signal to a new Higgs minimum. Such a discovery would be a tremendous step towards understanding the vacuum instability of the Higgs potential, and could have fascinating implications for anthropic considerations.

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          Lower limit on the Higgs mass in the standard model: An update

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            Gauge anomalies in an effective field theory

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              Schwinger-Keldysh diagrammatics for primordial perturbations

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                Author and article information

                Journal
                24 July 2019
                Article
                1907.10624
                0931058d-ee20-4897-a1a0-535b13d51cb9

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

                History
                Custom metadata
                38 pages, 8 figures and 2 tables
                hep-ph astro-ph.CO hep-th

                Cosmology & Extragalactic astrophysics,High energy & Particle physics
                Cosmology & Extragalactic astrophysics, High energy & Particle physics

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