Inflation, Symmetry, and B-Modes
arXiv:1403.5253 · doi:10.1016/j.physletb.2015.04.031
Abstract
We examine the role of using symmetry and effective field theory in inflationary model building. We describe the standard formulation of starting with an approximate shift symmetry for a scalar field, and then introducing corrections systematically in order to maintain control over the inflationary potential. We find that this leads to models in good agreement with recent data. On the other hand, there are attempts in the literature to deviate from this paradigm by invoking other symmetries and corrections. In particular: in a suite of recent papers, several authors have made the claim that standard Einstein gravity with a cosmological constant and a massless scalar carries conformal symmetry. They further claim that such a theory carries another hidden symmetry; a global SO(1,1) symmetry. By deforming around the global SO(1,1) symmetry, they are able to produce a range of inflationary models with asymptotically flat potentials, whose flatness is claimed to be protected by these symmetries. These models tend to give rise to B-modes with small amplitude. Here we explain that these authors are merely introducing a redundancy into the description, not an actual conformal symmetry. Furthermore, we explain that the only real (global) symmetry in these models is not at all hidden, but is completely manifest when expressed in the Einstein frame; it is in fact the shift symmetry of a scalar field. When analyzed systematically as an effective field theory, deformations do not generally produce asymptotically flat potentials and small B-modes, but other types of potentials with B-modes of appreciable amplitude. Such simple models typically also produce the observed red spectral index, Gaussian fluctuations, etc. In short: simple models of inflation, organized by expanding around a shift symmetry, are in excellent agreement with recent data.
9 pages in double column format. V2: Updated to coincide with version published in Physics Letters B
References in corpus (4)
Cited by in corpus (28)
- Equivalence of the Einstein and Jordan frames
- UV (in)sensitivity of Higgs inflation
- Inflation and reheating in theories with spontaneous scale invariance symmetry breaking
- The challenge for single field inflation with BICEP2 result
- A Theory of Self-Resonance After Inflation, Part 1: Adiabatic and Isocurvature Goldstone Modes
- Inflation beyond T-models and primordial B-modes
- Fake Conformal Symmetry in Unimodular Gravity
- Modified Lyth bound and implications of BICEP2 results
- Conformal inflation from the Higgs
- Scale-invariant inflation with one-loop quantum corrections
- BICEP2, the Higgs Mass and the SUSY-breaking Scale
- A Density Spike on Astrophysical Scales from an N-Field Waterfall Transition
- Non-canonical inflation coupled to matter
- Observational Viability of an Inflation Model with E-Model non-Minimal Derivative Coupling
- A Theory of Self-Resonance After Inflation, Part 2: Quantum Mechanics and Particle-Antiparticle Asymmetry
- HYM-flation: Yang-Mills cosmology with Horndeski coupling
- Strong Dynamics and Inflation: a review
- Chaotic inflation with curvaton induced running
- Inflation Driven by Unification Energy
- Universality Classes of Scale Invariant Inflation
- Dilaton from Tractor and Matter Field from Twistor
- Broken scale invariance, -attractors and vector impurity
- Frozen up Dilaton and the GUT/Planck Mass Ratio
- From DeWitt initial condition to Cosmological Quantum Entanglement
- Non-minimal scalar-tensor theories
- Cosmological parameter fittings with the BICEP2 data
- Cosmological singleton gravity theory and dS/LCFT correspondence
- Cosmology in a Globally U(1) Symmetric Scalar-Tensor Gravity