2012/06/30 by Ariel Megevand, Ariel Mégevand, Alejandro D. Sanchez +1 · 4 citations
Physics and Astronomy · #Black Holes and Theoretical Physics #Classical mechanics #Cosmology and Gravitation Theories #Function (biology) #Mechanics #Motion (physics) #Phase transition #Physics #Planar #Pulsars and Gravitational Waves Research #Quantum mechanics #Range (aeronautics) #Stationary state #Statistical physics #astro-ph.CO #hep-ph #hep-th
paper · pdf · doi:10.1016/j.nuclphysb.2012.08.001
25 pages, 9 figures. The title has changed. A discussion on the saturation of the friction and the possibility of runaway walls has been added
openalex publication_date 2012/08/07 · arxiv created 2012/08/09 · arxiv updated 2012/08/17 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/05
We consider the motion of planar phase-transition fronts in first-order phase transitions of the Universe. We find the steady state wall velocity as a function of a friction coefficient and thermodynamical parameters, taking into account the different hydrodynamic modes of propagation. We obtain analytical approximations for the velocity by using the thin wall approximation and the bag equation of state. We compare our results to those of numerical calculations and discuss the range of validity of the approximations. We analyze the structure of the stationary solutions. Multiple solutions may exist for a given set of parameters, even after discarding non-physical ones. We discuss which of these will be realized in the phase transition as the stationary wall velocity. Finally, we discuss on the saturation of the friction at ultra-relativistic velocities and the existence of runaway solutions.