High-frequency gravitational waves from first-order phase transitions
arXiv:2508.02794 · doi:10.1103/4v2z-fqsx
Abstract
First-order phase transitions in the early Universe are a well-motivated source of gravitational waves (GWs). In this Letter, we identify a previously overlooked GW production mechanism: gravitational transition radiation, arising from graviton emission by particles whose mass changes as they pass through expanding bubble walls. Unlike conventional sources such as bubble collisions or sound waves, this mechanism operates at the microscopic scale set by the Lorentz-contracted wall thickness, leading to GW emission at significantly higher frequencies. The resulting spectrum features a distinctive shape with a peak frequency redshifting to where is the current temperature of the Universe. This mechanism is generic and is expected to operate similarly for domain walls and other relativistic interfaces.
12 pages, 4 figures; v2: refs updated and a calculation error corrected; v3: refs updated, matches the published version
References in corpus (4)
- Gravitational Wave from Graviton Bremsstrahlung during Reheating
- Challenges and Opportunities of Gravitational Wave Searches above 10 kHz
- Non-thermal production of heavy vector dark matter from relativistic bubble walls
- A New Source of Phase Transition Gravitational Waves: Heavy Particle Braking Across Bubble Walls