Dynamics of Biased Domain Walls and the Devaluation Mechanism
arXiv:0805.4013 · doi:10.1103/PhysRevD.78.043521
Abstract
We study the evolution of biased domain walls in the early universe. We explicitly discuss the roles played by the surface tension and volume pressure in the evolution of the walls, and quantify their effects by looking at the collapse of spherical wall solutions. We then apply our results to a particular mechanism, known as the devaluation scenario, in which the dynamics of biased domain walls was suggested as a possible solution to the cosmological constant problem. Our results indicate that devaluation will in general lead to values of the cosmological constant that differ by several orders of magnitude from the observationally inferred value, . We also argue that the reasons behind this are not specific to a particular realization, and are expected to persist in any scenario of this kind, except if a low energy cut-off on the spectra of vacuum energy densities, of the order of the critical density at the present time, is postulated. This implies that any such scenario will require a fine-tuning similar to the usual one.
8 pages, 2 figures
References in corpus (5)
Cited by in corpus (12)
- The Wall of Fundamental Constants
- Quintessential inflation: A tale of emergent and broken symmetries
- Friction on ALP domain walls and gravitational waves
- Effects of Biases in Domain Wall Network Evolution
- Stability of domain walls in models with asymmetric potentials
- Observational Constraints on Varying-alpha Domain Walls
- Dynamics of Domain Walls for Split and Runaway Potentials
- Simulating the symmetron: domain walls and symmetry-restoring impurities
- Parameter-free velocity-dependent one-scale model for domain walls
- Embedded Domain Walls and Electroweak Baryogenesis
- Anatomy of geometrical destabilization of inflation
- Biased Domain Walls and the Origin of Early Massive Structures