Initial Conditions for Critical Higgs Inflation
arXiv:1712.04477 · doi:10.1016/j.physletb.2018.03.009
Abstract
It has been pointed out that a large non-minimal coupling between the Higgs and the Ricci scalar can source higher derivative operators, which may change the predictions of Higgs inflation. A variant, called critical Higgs inflation, employs the near-criticality of the top mass to introduce an inflection point in the potential and lower drastically the value of . We here study whether critical Higgs inflation can occur even if the pre-inflationary initial conditions do not satisfy the slow-roll behaviour (retaining translation and rotation symmetries). A positive answer is found: inflation turns out to be an attractor and therefore no fine-tuning of the initial conditions is necessary. A very large initial Higgs time-derivative (as compared to the potential energy density) is compensated by a moderate increase in the initial field value. These conclusions are reached by solving the exact Higgs equation without using the slow-roll approximation. This also allows us to treat consistently the inflection point, where the standard slow-roll approximation breaks down. Here we make use of an approach that is independent of the UV completion of gravity, by taking initial conditions that always involve sub-planckian energies.
8 pages, 5 figures; v2: comments and references added, version accepted for publication in Physics Letters B
References in corpus (11)
- The Standard Model Higgs boson as the inflaton
- Combined Measurement of the Higgs Boson Mass in Collisions at and 8 TeV with the ATLAS and CMS Experiments
- Higgs inflation: consistency and generalisations
- Power-counting and the Validity of the Classical Approximation During Inflation
- On Inflation with Non-minimal Coupling
- Higgs inflation at the critical point
- Higgs inflation still alive
- Ultra slow-roll inflation demystified
- Higgs inflation from Standard Model criticality
- A Simple Motivated Completion of the Standard Model below the Planck Scale: Axions and Right-Handed Neutrinos
- The Electroweak Vacuum Decay and the Gravitational Contribution
Cited by in corpus (35)
- Higgs inflation
- Inflation with term in the Palatini formalism
- Planck scale black hole dark matter from Higgs inflation
- Preheating after Higgs Inflation: Self-Resonance and Gauge boson production
- Metastability in Quadratic Gravity
- Higgs inflation with the Holst and the Nieh-Yan term
- Higgs inflation in the Palatini formulation with kinetic terms for the metric
- Overshooting, Critical Higgs Inflation and Second Order Gravitational Wave Signatures
- Quasi-Conformal Models and the Early Universe
- Dimensional Transmutation in Gravity and Cosmology
- Large- Constant-Roll Inflation Is Never An Attractor
- Initial conditions for Inflation in an FRW Universe
- Inflation is always semi-classical: Diffusion domination overproduces Primordial Black Holes
- Higgs inflation and teleparallel gravity
- Phenomenology of the inflation-inspired NMSSM at the electroweak scale
- Independent connection in ACTion during inflation
- Critical point Higgs inflation in the Palatini formulation
- Initial conditions for plateau inflation: a case study
- Dynamical Analysis of Attractor Behavior in Constant Roll Inflation
- Tree-level unitarity in Higgs inflation in the metric and the Palatini formulation
- Ruling out Critical Higgs Inflation?
- Higgs- inflation -- full slow-roll study at tree-level
- Critical Higgs inflation in a Viable Motivated Model
- BICEP/Keck data and Quadratic Gravity
- Simple single-field inflation models with arbitrarily small tensor/scalar ratio
- Sudden braking and turning with a two-field potential bump: primordial black hole formation
- Unification of inflation and dark matter in the Higgs-Starobinsky model
- Higgs field in cosmology
- Black-Hole evaporation from the perspective of neural networks
- Natural Higgs Inflation, Gauge Coupling Unification, and Neutrino Masses
- Axion-Sterile-Neutrino Dark Matter
- Baryogenesis from Higgs Inflation
- Introduction to Thermal Field Theory: From First Principles to Applications
- Hearing Higgs with Gravitational Wave Detectors
- Classical and quantum cosmology of -essentially modified and pure gravity