Gravitational waves from first-order phase transitions: from weak to strong
arXiv:2409.03651 · doi:10.1007/JHEP07(2025)217
Abstract
We study the generation of gravitational waves (GWs) during a cosmological first-order phase transition (PT) using the recently introduced Higgsless approach to numerically simulate the fluid motion induced by the PT. We present for the first time GW spectra sourced by bulk fluid motion in the aftermath of strong first-order PTs (), alongside weak () and intermediate () PTs, previously considered in the literature. We find that, for intermediate and strong PTs, the kinetic energy in our simulations decays, following a power law in time. The decay is potentially determined by non-linear dynamics and hence related to the production of vorticity. We show that the assumption that the source is stationary in time, characteristic of compressional motion in the linear regime (sound waves), agrees with our numerical results for weak PTs, since in this case the kinetic energy does not decay with time. We then provide a theoretical framework that extends the stationary assumption to one that accounts for the time evolution of the source: as a result, the GW energy density is no longer linearly increasing with the source duration, but proportional to the integral over time of the squared kinetic energy fraction. This effectively reduces the linear growth rate of the GW energy density and allows to account for the period of transition from the linear to the non-linear regimes of the fluid perturbations. We validate the novel theoretical model with the results of simulations and provide templates for the GW spectrum for a broad range of PT parameters.
70 pages, 16 figures
References in corpus (45)
- Search for an isotropic gravitational-wave background with the Parkes Pulsar Timing Array
- Electroweak baryogenesis
- Detecting gravitational waves from cosmological phase transitions with LISA: an update
- Energy Budget of Cosmological First-order Phase Transitions
- Gravitational Wave Production by Collisions: More Bubbles
- Gravitational waves from the sound of a first order phase transition
- Numerical simulations of acoustically generated gravitational waves at a first order phase transition
- The stochastic gravitational wave background from turbulence and magnetic fields generated by a first-order phase transition
- Shape of the acoustic gravitational wave power spectrum from a first order phase transition
- General Properties of the Gravitational Wave Spectrum from Phase Transitions
- Gravitational Radiation From Cosmological Turbulence
- Gravitational wave energy budget in strongly supercooled phase transitions
- Electroweak Bubble Wall Speed Limit
- Gravitational waves from stochastic relativistic sources: primordial turbulence and magnetic fields
- Can electroweak bubble walls run away?
- Gravitational waves from vacuum first-order phase transitions: from the envelope to the lattice
- The Spectrum of Gravitational Radiation from Primordial Turbulence
- Sound shell model for acoustic gravitational wave production at a first-order phase transition in the early Universe
- Vorticity, kinetic energy, and suppressed gravitational wave production in strong first order phase transitions
- Gravitational waves from first order cosmological phase transitions in the Sound Shell Model
- Numerical Simulations of Gravitational Waves from Early-Universe Turbulence
- Model-independent energy budget of cosmological first-order phase transitions
- Gravitational waves from bubble dynamics: Beyond the Envelope
- Friction pressure on relativistic bubble walls
- QCD-induced Electroweak Phase Transition
- Gravitational radiation from a bulk flow model
- Evolution of hydromagnetic turbulence from the electroweak phase transition
- Model-independent energy budget for LISA
- Gravitational waves from a supercooled electroweak phase transition and their detection with pulsar timing arrays
- Gravitational waves from first-order phase transitions in LISA: reconstruction pipeline and physics interpretation
- Generation of gravitational waves from freely decaying turbulence
- A hybrid simulation of gravitational wave production in first-order phase transitions
- Can we observe the QCD phase transition-generated gravitational waves through pulsar timing arrays?
- Higgsless simulations of cosmological phase transitions and gravitational waves
- Quantisation Across Bubble Walls and Friction
- Circular Polarization of Gravitational Waves from Early-Universe Helical Turbulence
- The dynamo effect in decaying helical turbulence
- Effect of density fluctuations on gravitational wave production in first-order phase transitions
- Reconstructing physical parameters from template gravitational wave spectra at LISA: first order phase transitions
- Polarization of gravitational waves from helical MHD turbulent sources
- Bubble-wall velocity in local thermal equilibrium: hydrodynamical simulations vs analytical treatment
- The timestep constraint in solving the gravitational wave equations sourced by hydromagnetic turbulence
- Shallow relic gravitational wave spectrum with acoustic peak
- The scalar, vector, and tensor modes in gravitational wave turbulence simulations
- Primordial acoustic turbulence: three-dimensional simulations and gravitational wave predictions