Horizon Feedback Inflation
arXiv:1712.07977 · doi:10.1140/epjc/s10052-018-5830-0
Abstract
We consider the effect of the Gibbons-Hawking radiation on the inflaton in the situation where it is coupled to a large number of spectator fields. We argue that this will lead to two important effects - a thermal contribution to the potential and a gradual change in parameters in the Lagrangian which results from thermodynamic and energy conservation arguments. We present a scenario of hilltop inflation where the field starts trapped at the origin before slowly experiencing a phase transition during which the field extremely slowly moves towards its zero temperature expectation value. We show that it is possible to obtain enough e-folds of expansion as well as the correct spectrum of perturbations without hugely fine-tuned parameters in the potential (albeit with many spectator fields). We also comment on how initial conditions for inflation can arise naturally in this situation.
v1: 17 pages, 5 figures. v2: updated discussion and references, removed typos, submitted to journal. v3: minor revisions, version published in EPJC
References in corpus (9)
- Eternal inflation and its implications
- De Sitter Space and Eternity
- Thermodynamics of de Sitter Black Holes: Thermal Cosmological Constant
- The IR stability of de Sitter: Loop corrections to scalar propagators
- A Measure of de Sitter Entropy and Eternal Inflation
- Dynamical vacuum energy in the expanding Universe confronted with observations: a dedicated study
- Inhomogeneous vacuum energy
- Backreaction during inflation: a physical gauge invariant formulation
- de Sitter Space is Unstable in Quantum Gravity