On Inflation with Non-minimal Coupling
arXiv:1002.2995 · doi:10.1007/JHEP11(2010)023
Abstract
A simple realization of inflation consists of adding the following operators to the Einstein-Hilbert action: (partial phi)^2, lambda phi^4, and xi phi^2 R, with xi a large non-minimal coupling. Recently there has been much discussion as to whether such theories make sense quantum mechanically and if the inflaton phi can also be the Standard Model Higgs. In this note we answer these questions. Firstly, for a single scalar phi, we show that the quantum field theory is well behaved in the pure gravity and kinetic sectors, since the quantum generated corrections are small. However, the theory likely breaks down at ~ m_pl / xi due to scattering provided by the self-interacting potential lambda phi^4. Secondly, we show that the theory changes for multiple scalars phi with non-minimal coupling xi phi dot phi R, since this introduces qualitatively new interactions which manifestly generate large quantum corrections even in the gravity and kinetic sectors, spoiling the theory for energies > m_pl / xi. Since the Higgs doublet of the Standard Model includes the Higgs boson and 3 Goldstone bosons, it falls into the latter category and therefore its validity is manifestly spoiled. We show that these conclusions hold in both the Jordan and Einstein frames and describe an intuitive analogy in the form of the pion Lagrangian. We also examine the recent claim that curvature-squared inflation models fail quantum mechanically. Our work appears to go beyond the recent discussions.
14 pages, 2 figures. Version 2: Clarified findings and improved wording. Elaborated important sections and removed an unnecessary section. Added references. Version 3: Updated towards JHEP version. Version 4: Final JHEP version
References in corpus (8)
- The Standard Model Higgs boson as the inflaton
- Inflation scenario via the Standard Model Higgs boson and LHC
- Power-counting and the Validity of the Classical Approximation During Inflation
- Inflationary Constraints on Type IIA String Theory
- A Delicate Universe
- The Standard Model Higgs Boson-Inflaton and Dark Matter
- Non-Minimal Inflation after WMAP3
- On the unitarity of linearized General Relativity coupled to matter
Cited by in corpus (14)
- Higgs inflation: consistency and generalisations
- Superconformal Symmetry, NMSSM, and Inflation
- Unitarizing Higgs Inflation
- Higgs-Palatini Inflation and Unitarity
- Running Kinetic Inflation
- One-loop divergences for gravity non-minimally coupled to a multiplet of scalar fields: calculation in the Jordan frame. I. The main results
- Remarks on Higgs Inflation
- Gauge invariant cosmological perturbations for the nonminimally coupled inflaton field
- Unitarity bounds on low scale quantum gravity
- Supergravity Higgs Inflation and Shift Symmetry in Electroweak Theory
- Cosmological Constraints on the Higgs Boson Mass
- Non-minimally coupled hybrid inflation
- Higgs Boson Mass Bounds in Seesaw Extended Standard Model with Non-Minimal Gravitational Coupling
- De Sitter ground state of scalar-tensor gravity and its primordial perturbation