Negative modes of Coleman-De Luccia bounces
arXiv:1408.6547 · doi:10.1103/PhysRevD.90.124002
Abstract
We investigate the negative modes about Coleman-De Luccia bounces governing vacuum transitions in de Sitter space, with the goal of gaining physical insight into the various anomalous results associated with these that have been reported in the literature. For the case of bounces with radii much less that the horizon distance we find two distinct regimes, distinguished by the magnitude of the bubble nucleation rate . If , then the behavior of the modes contributing to the determinant factors in is much as in flat spacetime, and the calculation of goes over smoothly to the flat spacetime calculation as the gravitational coupling is taken to zero. This is not the case if . These two regimes correspond to the two possible outcomes of de Sitter vacuum decay --- either a rapidly completed transition or non-percolation and eternal inflation. For bounces with radii comparable to the horizon length, we confirm previous results concerning anomalous negative modes with support on the bounce wall. We also find further evidence supporting previous claims, based on thin-wall arguments, of the absence of expected negative modes for a class of bounces that arises when the initial and final vacua are nearly degenerate.
41 pages, 9 figures; added reference and minor text changes
References in corpus (6)
- Thermal derivation of the Coleman-De Luccia tunneling prescription
- Observer dependence of bubble nucleation and Schwinger pair production
- The number of negative modes of the oscillating bounces
- Fluctuations about Cosmological Instantons
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Cited by in corpus (5)
- Towards a Solution of the Negative Mode Problem in Quantum Tunnelling with Gravity
- Fubini instantons in Dilatonic Einstein-Gauss-Bonnet theory of gravitation
- Thin-wall vacuum decay in the presence of a compact dimension meets the and tensions
- Parametrized Path Approach to Vacuum Decay
- Fate of false vacuum in non-perturbative regimes: Gravity effects