HydroGrav: Precise hydrodynamics and gravitational waves for cosmological phase transitions
Flynn Linton, William Searle, Xiao Wang, Csaba Balázs
hep-ph, astro-ph.CO
Submitted: 2026-06-26
Comments: 40 pages, 8 figures
Code: https://github.com/Hydro-Grav/HydroGrav
License: http://creativecommons.org/licenses/by/4.0/
The gist: We present HydroGrav, a C++ code used to construct self-similar fluid profiles, using the exact equation of state determined directly from the effective potential, for any particle physics model
Terminology
Abstract
We present HydroGrav, a C++ code used to construct self-similar fluid profiles, using the exact equation of state determined directly from the effective potential, for any particle physics model capable of producing a first-order electroweak phase transition. HydroGrav also supports the bag and mu nu (or improved bag) equations of state and includes an implementation of the sound shell model for computing the corresponding gravitational wave spectra. Using this framework, we compare the fluid profiles and gravitational wave spectra for the simplified (bag and mu nu) and exact equations of state for a Z 2-symmetric extension of the Standard Model. Furthermore, we perform a scan across the parameter space of this model to identify regions where the simplified and exact equations of state differ in peak amplitude and spectral shape. Finally, we estimate the effect of using the exact equation of state on the signal-to-noise ratio across the parameter space, as measured by LISA after a 4-year mission.
Sources
- Science with the space-based interferometer eLISA. II: Gravitational waves from cosmological phase transitions
- Cosmology with the Laser Interferometer Space Antenna
- Cosmic phase transitions: their applications and experimental signatures
- Detecting gravitational waves from cosmological phase transitions with LISA: an update
- Cosmological phase transitions: from perturbative particle physics to gravitational waves
- Gravitational waves from the sound of a first order phase transition
- Numerical simulations of acoustically generated gravitational waves at a first order phase transition
- Shape of the acoustic gravitational wave power spectrum from a first order phase transition
- Energy Budget of Cosmological First-order Phase Transitions
- Hydrodynamics of phase transition fronts and the speed of sound in the plasma
- Model-independent energy budget for LISA
- Energy budget and the gravitational wave spectra beyond the bag model
- Gravitational waves from cosmological first-order phase transitions with precise hydrodynamics
- Sound shell model for acoustic gravitational wave production at a first-order phase transition in the early Universe
- Laser Interferometer Space Antenna
- LISA Definition Study Report
- Science of the LISA mission: A Summary for the European Strategy for Particle Physics
- Gravitational waves from first order cosmological phase transitions in the Sound Shell Model
- Characterization of the gravitational wave spectrum from sound waves within the sound shell model
- CosmoTransitions: Computing Cosmological Phase Transition Temperatures and Bubble Profiles with Multiple Fields
Related papers
- Classification of g-modes for neutron stars with a strong transition: Novel universal relation including slow stable hybrid stars
- Higgsino Dark Matter Interpretation of the LUX-ZEPLIN 248 keV Nuclear-Recoil Event
- A Unified Bogoliubov Approach to Primordial Gravitational Waves: From Inflation to Reheating
- Probing Memory-Burdened Primordial Black Holes with High-Energy Neutrinos
- Enhanced Dark Matter Quantum Sensing via Phase-Space Geometric Interferometry
- Axions as Dark Matter, Dark Energy, and Dark Radiation