Measuring Inflaton Couplings via Primordial Gravitational Waves
arXiv:2305.00027 · doi:10.1007/JHEP07(2023)231
Abstract
We investigate the reach of future gravitational wave (GW) detectors in probing inflaton couplings with visible sector particles that can either be bosonic or fermionic in nature. Assuming reheating takes place through perturbative quantum production from vacuum in presence of classical inflaton background field, we find that the spectral energy density of the primordial GW generated during inflation becomes sensitive to inflaton-matter coupling. We conclude, obeying bounds from Big Bang Nucleosysthesis and Cosmic Microwave Background, that, e.g., inflaton-scalar couplings of the order of GeV fall within the sensitivity range of several proposed GW detector facilities. However, this prediction is sensitive to the size of the inflationary scale, nature of the inflaton-matter interaction and shape of the potential during reheating. Having found the time-dependent effective inflaton decay width, we also discuss its implications for dark matter (DM) production from the thermal plasma via UV freeze-in during reheating. It is shown, that one can reproduce the observed DM abundance for its mass up to several PeVs, depending on the dimension of the operator connecting DM with the thermal bath and the associated scale of the UV physics. Thus we promote primordial GW to observables sensitive to feebly coupled inflaton, which is very challenging if not impossible to test in conventional particle physics laboratories or astrophysical measurements.
43 pages, 7 figures, 2 Tables, version accepted for JHEP
References in corpus (28)
- Dark Matter Candidates from Particle Physics and Methods of Detection
- The Dawn of FIMP Dark Matter: A Review of Models and Constraints
- Relic neutrino decoupling with flavour oscillations revisited
- Towards a precision calculation of in the Standard Model II: Neutrino decoupling in the presence of flavour oscillations and finite-temperature QED
- New Sensitivity Curves for Gravitational-Wave Signals from Cosmological Phase Transitions
- Improved Calculation of the Primordial Gravitational Wave Spectrum in the Standard Model
- Neutrino decoupling including flavour oscillations and primordial nucleosynthesis
- A precision calculation of relic neutrino decoupling
- Improved limits on the tensor-to-scalar ratio using BICEP and Planck
- The First Three Seconds: a Review of Possible Expansion Histories of the Early Universe
- Inflaton Oscillations and Post-Inflationary Reheating
- Precision calculations of the gravitational wave background spectrum from inflation
- Probing Physics Beyond the Standard Model: Limits from BBN and the CMB Independently and Combined
- Blue-tilted Tensor Spectrum and Thermal History of the Universe
- Detection of Early-Universe Gravitational Wave Signatures and Fundamental Physics
- Gravitational wave production from preheating: parameter dependence
- Radiative Production of Non-thermal Dark Matter
- Ricci Reheating
- Gravitational reheating
- Primordial Gravitational Wave Signals in Modified Cosmologies
- Observational Constraints on Theories with a Blue Spectrum of Tensor Modes
- Effective Theory of Freeze-in Dark Matter
- Higgs boson induced reheating and ultraviolet frozen-in dark matter
- Precision cosmology and the stiff-amplified gravitational-wave background from inflation: NANOGrav, Advanced LIGO-Virgo and the Hubble tension
- Implications of time-dependent inflaton decay on reheating and dark matter production
- Effects of the Axion Through the Higgs Portal on Primordial Gravitational Waves During the Electroweak Breaking
- Signatures of Non-thermal Dark Matter with Kination and Early Matter Domination: Gravitational Waves versus Laboratory Searches
- Gravitational wave production from preheating with trilinear interactions
Cited by in corpus (12)
- Improved Predictions on Higgs-Starobinsky Inflation and Reheating with ACT DR6 and Primordial Gravitational Waves
- Enhanced primordial gravitational waves from a stiff post-inflationary era due to an oscillating inflaton
- Primordial Gravitational Waves as Probe of Dark Matter in Interferometer Missions: Fisher Forecast and MCMC
- Lepton collider as a window to reheating via freezing in dark matter detection. Part II
- Probing flavor violation and baryogenesis via primordial gravitational waves
- Multi-messenger FIMP
- Dark matter cooling during early matter-domination boosts sub-earth halos
- Gravitational waves from a curvature-induced phase transition of a Higgs-portal dark matter sector
- Gravitational Wave Probe of Gravitational Dark Matter from Preheating
- Reheating and Leptogenesis after Vector inflation
- Post-inflationary production of particle Dark Matter: Hilltop and Coleman-Weinberg inflation
- ACT DR6 Insights on the Inflationary Attractor models and Reheating