Abundant production of scalars and axions from phase transition bubble expansion
Isabel Garcia Garcia, Gaurang Ramakant Kane, John March-Russell, Andrea Paolini
hep-ph, astro-ph.CO
Submitted: 2026-08-03
Comments: 36 pages, 8 figures
License: http://creativecommons.org/licenses/by/4.0/
The gist: We revisit aspects of particle production during cosmological first-order phase transitions, and show that the expansion of true-vacuum bubbles can be a copious source of particle production.
Terminology
Abstract
We revisit aspects of particle production during cosmological first-order phase transitions, and show that the expansion of true-vacuum bubbles can be a copious source of particle production. Specifically, for a massive spin-0 field linearly coupled to the bubble profile, spherical bubbles expanding even at constant radial velocity efficiently produce particles until the local-rest-frame radius of curvature of the bubble wall exceeds the particle Compton wavelength -- contrary to the expectation that walls moving at constant speed cannot radiate. We compute the momentum spectrum of the produced particles for both accelerated and constant-velocity expansion histories, identify the regimes of coherent and incoherent production, quantify the validity of the perturbative treatment, and show that this mechanism can parametrically dominate other production processes of feebly coupled particles, including freeze-in. Our results apply to many models of light, feebly coupled particles studied in the literature, providing new sources of dark radiation and dark matter. In particular, a first-order deconfinement-confinement transition in a hidden Yang-Mills sector can abundantly produce axion-like particles, leading to dark radiation and/or dark matter signatures over large regions of parameter space.
Sources
- Thermal Squeezeout of Dark Matter
- Heavy Baryon Dark Matter from $SU(N)$ Confinement: Bubble Wall Velocity and Boundary Effects
- The Boring Monopole
- Can electroweak bubble walls run away?
- Bubble wall velocity: heavy physics effects
- Friction pressure on relativistic bubble walls
- Reflections on Bubble Walls
- Axion Interactions with Domain and Bubble Walls
- Bounds on the bubble wall velocity
- Aspects of Particle Production from Bubble Dynamics at a First Order Phase Transition
- Chern-Simons bubbles: Lopsided false vacuum decay in axion electrodynamics
- String-induced vacuum decay and its gravitational wave signatures
- Nonthermal Heavy Dark Matter from a First-Order Phase Transition
- Freeze-In Production of FIMP Dark Matter
- Non-thermal Dark Matter Production from the Electroweak Phase Transition: Multi-TeV WIMPs and "Baby-Zillas"
- Gravitational wave generation from bubble collisions in first-order phase transitions: an analytic approach
- Gravitational waves from the sound of a first order phase transition
- Numerical simulations of acoustically generated gravitational waves at a first order phase transition
- Gravitational waves from first order cosmological phase transitions in the Sound Shell Model
- Twin Higgs WIMP Dark Matter
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