Litcius/Paper detail

Hubble-induced phase transitions: Walls are not forever

Dario Bettoni, Javier Rubio

2020Journal of Cosmology and Astroparticle Physics31 citationsDOIOpen Access PDF

Abstract

The interplay between non-minimally coupled scalar fields and a kinetic-dominated era following the end of inflation triggers the spontaneous symmetry breaking of internal symmetries and the subsequent evolution of the fields towards large expectation values. We present here a detailed analysis of the associated dynamics in quintessential inflation scenarios involving a non-minimally coupled $Z_2$-symmetric spectator field. By analytically following the evolution of the spectator field fluctuations at early times, we characterize the formation of classical, homogeneous and spatially-localized field configurations separated by domain walls. The life expectancy of these dividing barriers is set by the scale of inflation, the non-minimal coupling and self-interactions of the spectator field and potentially, but not necessarily, the duration of the heating stage. For most of the parameter space, the domain walls are doomed to disappear before big bang nucleosynthesis. Potential phenomenological consequences of the scenario are discussed.

Topics & Concepts

PhysicsInflation (cosmology)Scalar fieldHomogeneous spaceDomain wall (magnetism)HomogeneousField (mathematics)Scalar (mathematics)Phase (matter)Phenomenology (philosophy)Expectancy theoryTheoretical physicsClassical mechanicsSlow rollStatistical physicsPhase transitionCosmologyScale (ratio)Dynamics (music)Domain (mathematical analysis)Back-reactionPhenomenological modelComponent (thermodynamics)Quantum electrodynamicsThermal fluctuationsTime evolutionSet (abstract data type)Cosmology and Gravitation TheoriesBlack Holes and Theoretical PhysicsGalaxies: Formation, Evolution, Phenomena