On Synthetic Gravitational Waves from Multi-field Inflation
arXiv:1712.01991 · doi:10.1088/1475-7516/2018/04/062
Abstract
We revisit the possibility of producing observable tensor modes through a continuous particle production process during inflation. Particularly, we focus on the multi-field realization of inflation where a spectator pseudo-scalar induces a significant amplification of the gauge fields through the coupling . In this model, both the scalar and the Abelian gauge fields are gravitationally coupled to the inflaton sector, therefore they can only affect the primordial scalar and tensor fluctuations through their mixing with gravitational fluctuations. Recent studies on this scenario show that the sourced contributions to the scalar correlators can be dangerously large to invalidate a large tensor power spectrum through the particle production mechanism. In this paper, we re-examine these recent claims by explicitly calculating the dominant contribution to the scalar power and bispectrum. Particularly, we show that once the current limits from CMB data are taken into account, it is still possible to generate a signal as large as and the limitations on the model building are more relaxed than what was considered before.
33 pages, 5 figures, published version
References in corpus (13)
- CMB-S4 Science Book, First Edition
- Large Nongaussianity in Axion Inflation
- CMBPol Mission Concept Study: Probing Inflation with CMB Polarization
- Gravitational waves at interferometer scales and primordial black holes in axion inflation
- Curvature and isocurvature perturbations from two-field inflation in a slow-roll expansion
- Blue Tensor Spectrum from Particle Production during Inflation
- Universal Constraints on Axions from Inflation
- Generalised tensor fluctuations and inflation
- Gravitational Waves and the Scale of Inflation
- Gravitational Waves and Scalar Perturbations from Spectator Fields
- How Well Can We Really Determine the Scale of Inflation?
- SPIDER: A Balloon-borne Large-scale CMB Polarimeter
- Can a spectator scalar field enhance inflationary tensor mode?
Cited by in corpus (22)
- Inflation and Primordial Black Holes
- Mechanisms for Primordial Black Hole Production in String Theory
- Primordial black holes as dark matter and gravitational waves from bumpy axion inflation
- Non-Gaussianity from Axion-Gauge Fields Interactions during Inflation
- Squeezed tensor non-Gaussianity in non-attractor inflation
- A new mechanism to enhance primordial tensor fluctuations in single field inflation
- Mixed Non-Gaussianity from Axion-Gauge Field Dynamics
- Statistically Anisotropic Tensor Modes from Inflation
- Footprint of Two-Form Field: Statistical Anisotropy in Primordial Gravitational Waves
- Generation of Primordial Black Holes and Gravitational Waves from Dilaton-Gauge Field Dynamics
- New constraints on axion-gauge field dynamics during inflation from and BICEP/Keck data sets
- Unveiling the nonlinear dynamics of a rolling axion during inflation
- Parity Violating Non-Gaussianity from Axion-Gauge Field Dynamics
- Gravitational wave trispectrum in the axion-SU(2) model
- Curvature Perturbations From Stochastic Particle Production During Inflation
- Inflation from Multiple Pseudo-Scalar Fields: PBH Dark Matter and Gravitational Waves
- Synthetic Gravitational Waves from a Rolling Axion Monodromy
- Statistically-Anisotropic Tensor Bispectrum from Inflation
- Strong backreaction of gauge quanta produced during inflation
- On the prospects of thermalization of axion-SU(2) inflation
- Gravitational Waves from a Gauge Field Non-minimally Coupled to Gravity
- Gravitational Waves from Gauge Quanta Produced during Inflation