Induced gravitational waves as a cosmological probe of the sound speed during the QCD phase transition
arXiv:2010.06193 · doi:10.1088/1475-7516/2021/06/048
Abstract
The standard model of particle physics is known to be intriguingly successful. However their rich phenomena represented by the phase transitions (PTs) have not been completely understood yet, including the possibility of the existence of unknown dark sectors. In this Letter, we investigate the measurement of the equation of state parameter and the sound speed of the PT plasma with use of the gravitational waves (GWs) of the universe. Though the propagation of GW is insensitive to in itself, the sound speed value affects the dynamics of primordial density (or scalar curvature) perturbations and the induced GW by their horizon reentry can then be an indirect probe both and . We numerically reveal the concrete spectrum of the predicted induced GW with two simple examples of the scalar perturbation spectrum: the monochromatic and scale-invariant spectra. In the monochromatic case, we see that the resonant amplification and cancellation scales of the induced GW depend on the values at different time respectively. The scale-invariant case gives a more realistic spectrum and its specific shape will be compared with observations. In particular, the QCD phase transition corresponds with the frequency range of the pulsar timing array (PTA) observations. If the amplitude of primordial scalar power is in the range of , the induced GW is consistent with current observational constraints and detectable in the future observation in Square Kilometer Array. Futhermore the recent possible detection of stochastic GWs by NANOGrav 12.5 yr analysis~[1] can be explained by the induced GW if .
9 pages, 5 figures
References in corpus (23)
- The order of the quantum chromodynamics transition predicted by the standard model of particle physics
- The NANOGrav 12.5-year Data Set: Search For An Isotropic Stochastic Gravitational-Wave Background
- Gravitational Wave Spectrum Induced by Primordial Scalar Perturbations
- Gravitational-wave sensitivity curves
- The cosmological gravitational wave background from primordial density perturbations
- Primordial Black Holes and Slow-Roll Violation
- NANOGrav Hints to Primordial Black Holes as Dark Matter
- Did NANOGrav see a signal from primordial black hole formation?
- Implications of the NANOGrav results for inflation
- Solar-Mass Primordial Black Holes Explain NANOGrav Hint of Gravitational Waves
- Gravitational Waves Induced by Scalar Perturbations with a Lognormal Peak
- Induced gravitational waves as a probe of thermal history of the universe
- Precision calculations of the gravitational wave background spectrum from inflation
- Constraints on the induced gravitational wave background from primordial black holes
- Gauge Independence of Induced Gravitational Waves
- Unified treatment of cosmological perturbations from super-horizon to small scales
- On the gravitational wave sources from the NANOGrav 12.5-yr data
- Blue-tilted inflationary tensor spectrum and reheating in the light of NANOGrav results
- Thermal History of the Early Universe and Primordial Gravitational Waves from Induced Scalar Perturbations
- Testing Stochastic Gravitational Wave Signals from Primordial Black Holes with Optical Telescopes
- Implications of the NANOGrav result on primordial gravitational waves in nonstandard cosmologies
- Gauge transformation of scalar induced tensor perturbation during matter domination
- NANOGrav Hints on Planet-Mass Primordial Black Holes
Cited by in corpus (33)
- The NANOGrav 15-year Data Set: Search for Signals from New Physics
- The recent gravitational wave observation by pulsar timing arrays and primordial black holes: the importance of non-gaussianities
- Primordial gravitational waves from NANOGrav: a broken power-law approach
- Primordial non-gaussianity up to all orders: theoretical aspects and implications for primordial black hole models
- From inflation to black hole mergers and back again: Gravitational-wave data-driven constraints on inflationary scenarios with a first-principle model of primordial black holes across the QCD epoch
- Searching For Gravitational Waves From Cosmological Phase Transitions With The NANOGrav 12.5-year dataset
- PBH formation from spherically symmetric hydrodynamical perturbations: a review
- Primordial black holes and stochastic gravitational wave background from inflation with a noncanonical spectator field
- Gravitational waves from dark matter isocurvature
- Search for scalar induced gravitational waves in the International Pulsar Timing Array Data Release 2 and NANOgrav 12.5 years datasets
- Simulations of PBH formation at the QCD epoch and comparison with the GWTC-3 catalog
- Ultra-low frequency gravitational waves from cosmological and astrophysical processes
- Translating nano-Hertz gravitational wave background into primordial perturbations taking account of the cosmological QCD phase transition
- Primordial black holes in the curvaton model: possible connections to pulsar timing arrays and dark matter
- Primordial black hole dark matter from inflation: the reverse engineering approach
- Curbing PBHs with PTAs
- Induced Gravitational Wave interpretation of PTA data: a complete study for general equation of state
- NANOGrav Signal from First-Order Confinement/Deconfinement Phase Transition in Different QCD Matters
- Induced gravitational waves from slow-roll inflation after an enhancing phase
- Expansion history-dependent oscillations in the scalar-induced gravitational wave background
- The Third Order Scalar Induced Gravitational Waves
- New universal property of cosmological gravitational wave anisotropies
- Bound on Induced Gravitational Waves during Inflation Era
- Speed of sound in QCD matter
- Primordial Black Hole Formation during a Strongly Coupled Crossover
- Primordial Black Holes and Induced Gravitational Waves from a Smooth Crossover beyond Standard Model
- Speed of sound and liquid-gas phase transition in nuclear matter
- Scalar induced gravitational waves review
- The LISA forecast on a smooth crossover beyond the Standard Model through the scalar-induced gravitational waves
- Beware of the running when producing heavy primordial black holes
- Gravitational wave signal from primordial magnetic fields in the Pulsar Timing Array frequency band
- Cosmology from Strong Interactions
- The Dark Side of the Moon: Listening to Scalar-Induced Gravitational Waves