arXiv · gr-qc/9803068
Quantum Creation of a Universe with $Ω\not = 1$: Singular and Non-Singular Instantons
Abstract
We propose two new classes of instantons which describe the tunneling and/or quantum creation of closed and open universes. The instantons leading to an open universe can be considered as generalizations of the Coleman-De-Luccia solution. They are non-singular, unlike the instantons recently studied by Hawking and Turok, whose prescription has the problem that the singularity is located on the hypersurface connecting to the Lorentzian region, which makes it difficult to remove. We argue that such singularities are harmless if they are located purely in the Euclidean region. We thus obtain new singular instantons leading to a closed universe; unlike the usual regular instantons used for this purpose, they do not require complex initial conditions. The singularity gives a boundary contribution to the action which is small for the instantons leading to sufficient inflation, but changes the sign of the action for small $ϕ$ corresponding to short periods of inflation.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Raphael Bousso, Andrei Linde. 1998-04-14. Quantum Creation of a Universe with $Ω\not = 1$: Singular and Non-Singular Instantons. https://doi.org/10.1103/physrevd.58.083503
Cite the original work for its findings. Save a collection to share your selection of sources.