The challenge of ruling out inflation via the primordial graviton background
arXiv:2208.14088 · doi:10.3847/2041-8213/ac9b0e
Abstract
Recent debates around the testability of the inflationary paradigm raise the question of how to model-independently discriminate it from competing scenarios. We argue that a detection of the Cosmic Graviton Background (CGB), the relic radiation from gravitons decoupling around the Planck time, would rule out the inflationary paradigm, as realistic inflationary models would dilute the CGB to an unobservable level. The CGB contribution to the effective number of relativistic species, , is well within the reach of next-generation cosmological probes. We argue that detecting the high-frequency stochastic gravitational wave background associated to the CGB will be challenging but potentially feasible. We briefly discuss expectations within alternatives to inflation, focusing on bouncing cosmologies and emergent scenarios.
7 pages, 1 figure. v2: added further discussions on underlying assumptions, added references, matches version accepted for publication in ApJ Letters
References in corpus (14)
- The NANOGrav 12.5-year Data Set: Search For An Isotropic Stochastic Gravitational-Wave Background
- Challenges and Opportunities of Gravitational Wave Searches at MHz to GHz Frequencies
- Reheating predictions in single field inflation
- Implications of the NANOGrav results for inflation
- Eppur è piatto? The cosmic chronometer take on spatial curvature and cosmic concordance
- Exploring Bouncing Cosmologies with Cosmological Surveys
- Detecting High-Frequency Gravitational Waves with Microwave Cavities
- Primordial gravitational waves from NANOGrav: a broken power-law approach
- Inflationary schism after Planck2013
- Gravitational Waves as a Big Bang Thermometer
- A Refined Einstein-Gauss-Bonnet Inflationary Theoretical Framework
- Blue-tilted inflationary tensor spectrum and reheating in the light of NANOGrav results
- Generating Scale-Invariant Perturbations from Rapidly-Evolving Equation of State
- Amplification of the Primordial Gravitational Waves Energy Spectrum by a Kinetic Scalar in Gravity
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- Recent Advances on Inflation
- Inflationary interpretation of the stochastic gravitational wave background signal detected by pulsar timing array experiments
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- Probing The Early Universe Cosmology With NANOGrav: Possibilities and Limitations
- The future search for low-frequency axions and new physics with the FLASH resonant cavity experiment at Frascati National Laboratories
- Exploring High Frequency Gravitational Waves with Magnons
- Towards a reliable calculation of relic radiation from primordial gravitational waves
- Cavity Detection of Gravitational Waves: Where Do We Stand?
- Imprints of Barrow-Tsallis Cosmology in Primordial Gravitational Waves
- Gravitational wave search through electromagnetic telescopes
- A Simple Derivation of the Gertsenshtein Effect
- Searching for High Frequency Gravitational Waves with Phonons
- Constraints on an Anisotropic Universe
- Graviton to Photon Conversion via Parametric Resonance
- Astrophysical neutrino oscillations after pulsar timing array analyses
- Tracking the Multifield Dynamics with Cosmological Data: A Monte Carlo approach
- Double-graviton production from Standard Model plasma
- Testing scale-invariant inflation against cosmological data
- Inflationary attractors and radiative corrections in light of ACT data
- Negative non-Gaussianity as a salvager for PBHs with PTAs in bounce
- Future targets for light gauge bosons from cosmic strings
- Graviton-photon conversion in blazar jets as a probe of high-frequency gravitational waves
- Graviton-photon conversion in stochastic magnetic fields
- VSL-Gravity in light of PSR B1913+16 Full Data Set: Upper limits on graviton mass and its theoretical consequences
- Theoretical Radio Signals from Radio-Band Gravitational Waves Converted from the Neutron Star Magnetic Field
- Constraints on High-Frequency Gravitational Waves from Graviton-Photon Conversion in the M87 Galaxy
- Returning Back to Mukhanov Parametrization of Inflationary Equation of State
- Primordial observables of explicit diffeomorphism violation in gravity
- Testing No slip model with pulsar timing arrays: NANOGrav and IPTA