Published June 15, 2015 | Version Published + Submitted
Journal Article Open

Is a Higgs vacuum instability fatal for high-scale inflation?

  • 1. ROR icon Fermilab
  • 2. ROR icon Lawrence Berkeley National Laboratory
  • 3. ROR icon University of California, Berkeley

Abstract

We study the inflationary evolution of a scalar field h with an unstable potential for the case where the Hubble parameter H during inflation is larger than the instability scale Λ_I of the potential. Quantum fluctuations in the field of size δh ∼ H/(2π) imply that the unstable part of the potential is sampled during inflation. We investigate the evolution of these fluctuations to the unstable regime and in particular whether they generate cosmological defects or even terminate inflation. We apply the results of a toy scalar model to the case of the Standard Model Higgs boson, the quartic of which evolves to negative values at high scales, and extend previous analyses of Higgs dynamics during inflation utilizing statistical methods to a perturbative and fully gauge-invariant formulation. We show that the dynamics are controlled by the renormalization group-improved quartic coupling λ(μ) evaluated at a scale μ = H, such that Higgs fluctuations are enhanced by the instability if H > Λ_I. Even if H > Λ_I, the instability in the Standard Model Higgs potential does not end inflation; instead the universe slowly sloughs off crunching patches of space that never come to dominate the evolution. As inflation proceeds past 50 e-folds, a significant proportion of patches exits inflation in the unstable vacuum, and as much as 1% of the spacetime can rapidly evolve to a defect. Depending on the nature of these defects, however, the resulting universe could still be compatible with ours.

Additional Information

© 2015 American Physical Society. (Received 1 May 2015; published 25 June 2015) We thank Anson Hook, Bibhushan Shakya, and Moira Gresham for collaboration at the initial stages of this project. It is also our pleasure to thank Nima Arkani-Hamed, Tim Cohen, Daniel Chung, Michele Papucci, David Pinner, and Matt Schwartz for useful conversations. H. Y. and K. Z. are supported by the DOE under Contract No. DE-AC02-05CH11231. J. K. is supported by the DOE under Contract No. DE-SC0007859 and Fermilab, operated by Fermi Research Alliance, LLC, under Contract No. DE-AC02-07CH11359 with the United States Department of Energy.

Attached Files

Published - PhysRevD.91.123537.pdf

Submitted - 1503.05193.pdf

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Additional details

Identifiers

Eprint ID
96416
Resolver ID
CaltechAUTHORS:20190613-164149238

Related works

Funding

Department of Energy (DOE)
DE-AC02-05CH11231
Department of Energy (DOE)
DE-SC0007859
Department of Energy (DOE)
DE-AC02-07CH11359

Dates

Created
2019-06-17
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Updated
2021-11-16
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Physics Department