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The Challenge of Ruling Out Inflation via the Primordial Graviton Background

Sunny Vagnozzi, Abraham Loeb

2022The Astrophysical Journal Letters61 citationsDOIOpen Access PDF

Abstract

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 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, Δ N eff, g ≈ 0.054, 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.

Topics & Concepts

GravitonUnobservablePhysicsDecoupling (probability)PlanckGravitational waveInflation (cosmology)TestabilityNon-GaussianityTheoretical physicsGravitationCosmic microwave backgroundAstrophysicsEconometricsEconomicsAstronomyQuantum mechanicsPhilosophyEngineeringAnisotropyControl engineeringEpistemologyCosmology and Gravitation TheoriesGalaxies: Formation, Evolution, PhenomenaBlack Holes and Theoretical Physics
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