Propagating Speed of Primordial Gravitational Waves
arXiv:2007.04256 · doi:10.1103/PhysRevD.102.083530
Abstract
Primordial Gravitational Waves, i.e. a background of metric perturbations sourced by the quantum inflationary fluctuations, if measured, could both provide a substantial evidence for primordial inflation and shed light on physics at extremely high energy scales. In this work we focus on their propagating speed. Using an effective field theory approach we introduce a time-dependent propagating speed showing that also small deviations from the General Relativity (GR) prediction can lead to testable consequences. We derive a set of equations that relate the propagating speed and its time dependence to the inflationary parameters and that generalize the usual slow roll consistency relations. Imposing the new generalized consistency relations and combining small and large scales data, we derive model independent constraints on inflation with non-trivial primordial tensor speed. In particular we constrain its scale dependence to be at 68% C.L. while we only derive the lower bound at 95% C.L. . We also constrain the tensor-to-scalar ratio at the pivot scale to be at 95% C.L. in agreement with the result provided by the Planck collaboration. Thanks to a proper small scale parameterization of the tensor spectrum we derive stringent constraints on the tensor tilt at 68% C.L. and on its runnings and both at 68% C.L. Our results show a remarkable agreement with the standard slow roll predictions and prove that current data can significantly constrain deviations from GR on the inflationary energy scales.
25 pages, 8 figures. Edited to match Phys. Rev. D published version
References in corpus (33)
- Gravitational Waves and Gamma-rays from a Binary Neutron Star Merger: GW170817 and GRB 170817A
- Laser Interferometer Space Antenna
- Science Case for the Einstein Telescope
- The Effective Field Theory of Inflation
- Effective Field Theory for Inflation
- Exploring gravitational theories beyond Horndeski
- Science with the space-based interferometer LISA. IV: Probing inflation with gravitational waves
- SPT-3G: A Next-Generation Cosmic Microwave Background Polarization Experiment on the South Pole Telescope
- Unifying framework for scalar-tensor theories of gravity
- Swampland Implications of GW170817-compatible Einstein-Gauss-Bonnet Gravity
- CLASS: The Cosmology Large Angular Scale Surveyor
- Resilience of the standard predictions for primordial tensor modes
- Hamiltonian analysis of spatially covariant gravity
- Blue Tensor Spectrum from Particle Production during Inflation
- Inflation and String Theory
- Prospects for direct detection of primordial gravitational waves
- The Speed of Gravity
- Bounding the speed of gravity with gravitational wave observations
- Measuring the speed of cosmological gravitational waves
- Non-Minimally Coupled Einstein Gauss Bonnet Inflation Phenomenology in View of GW170817
- Bounce universe from string-inspired Gauss-Bonnet gravity
- BICEP3 performance overview and planned Keck Array upgrade
- Gravitational Waves and the Scale of Inflation
- Observational Constraints on Theories with a Blue Spectrum of Tensor Modes
- How Well Can We Really Determine the Scale of Inflation?
- Forecasts on the speed of gravitational waves at high
- WMAP-normalized Inflationary Model Predictions and the Search for Primordial Gravitational Waves with Direct Detection Experiments
- Measuring the Speed of Gravitational Waves from the First and Second Observing Run of Advanced LIGO and Advanced Virgo
- The effective theory of fluids at NLO and implications for dark energy
- The Asymptotic Behavior of Bouncing Cosmological Models in Gravity Theory
- Probing the primordial universe with gravitational waves detectors
- Intro to Effective Field Theories and Inflation
- What is the amplitude of the Gravitational Waves background expected in the Starobinsky model ?
Cited by in corpus (27)
- Implications of the NANOGrav results for inflation
- Inflationary interpretation of the stochastic gravitational wave background signal detected by pulsar timing array experiments
- A Refined Einstein-Gauss-Bonnet Inflationary Theoretical Framework
- Spectrum of Primordial Gravitational Waves in Modified Gravities: A Short Overview
- Cosmological constraints on slow-roll inflation: an update
- Primordial Gravitational Waves Predictions for GW170817-compatible Einstein-Gauss-Bonnet Theory
- Intermittent null energy condition violations during inflation and primordial gravitational waves
- Inflation, the Hubble Tension and Early Dark Energy: an alternative overview
- Chirality of Gravitational Waves in Chern-Simons Gravity Cosmology
- Towards a reliable calculation of relic radiation from primordial gravitational waves
- Effects of the Axion Through the Higgs Portal on Primordial Gravitational Waves During the Electroweak Breaking
- Inflationary Potential as seen from Different Angles: Model Compatibility from Multiple CMB Missions
- Inflationary Dynamics and Swampland Criteria for Modified Gauss-Bonnet Gravity Compatible with GW170817
- Generating enhanced parity-violating gravitational waves during inflation with violation of the null energy condition
- Higher-Curvature Corrections and Tensor Modes
- Amplification of the Primordial Gravitational Waves Energy Spectrum by a Kinetic Scalar in Gravity
- CFTs Blueshift Tensor Fluctuations Universally
- Generating enhanced primordial GWs during inflation with intermittent violation of NEC and diminishment of GW propagating speed
- Amplification of Primordial Gravitational Waves by a Geometrically Driven non-canonical Reheating Era
- -Gravity Generated Post-inflationary Eras and their Effect on Primordial Gravitational Waves
- Tracking the Multifield Dynamics with Cosmological Data: A Monte Carlo approach
- Effects of a Pre-inflationary de Sitter Bounce on the Primordial Gravitational Waves in Gravity Theories
- One Extension to Explain Them All, One Scale-Invariant Spectrum to Test Them All, and in One Model Bind Them
- Current and Future constraints on single-field -Attractor model
- Synthetic Gravitational Waves from a Rolling Axion Monodromy
- Gravitational waves in a cyclic Universe: resilience through cycles and vacuum state
- Measuring the speed of scalar induced gravitational waves from observations