Two Tunnels to Inflation
Abstract
We investigate the formation via tunneling of inflating (false-vacuum) bubbles in a true-vacuum background, and the reverse process. Using effective potentials from the junction condition formalism, all true- and false-vacuum bubble solutions with positive interior and exterior cosmological constant, and arbitrary mass are catalogued. We find that tunneling through the same effective potential appears to describe two distinct processes: one in which the initial and final states are separated by a wormhole (the Farhi-Guth-Guven mechanism), and one in which they are either in the same hubble volume or separated by a cosmological horizon. In the zero-mass limit, the first process corresponds to the creation of an inhomogenous universe from nothing, while the second mechanism is equivalent to the nucleation of true- or false-vacuum Coleman-De Luccia bubbles. We compute the probabilities of both mechanisms in the WKB approximation using semi-classical Hamiltonian methods, and find that -- assuming both process are allowed -- neither mechanism dominates in all regimes.
Keywords
Cite
@article{arxiv.gr-qc/0512034,
title = {Two Tunnels to Inflation},
author = {Anthony Aguirre and Matthew C. Johnson},
journal= {arXiv preprint arXiv:gr-qc/0512034},
year = {2009}
}
Comments
16 PRD-style pages, 13 figures. PRD, in press. Revised to match published version