Kinetic dominance and the wave function of the Universe

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URI: http://hdl.handle.net/10498/26624
DOI: 10.1103/PhysRevD.105.083502
ISSN: 1550-2368
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2022Department
MatemáticasSource
PHYSICAL REVIEW D 105, 083502 (2022)Abstract
We analyze the emergence of classical inflationary universes in a kinetic-dominated stage using a
suitable class of solutions of the Wheeler-DeWitt equation with a constant potential. These solutions are
eigenfunctions of the inflaton momentum operator that are strongly peaked on classical solutions
exhibiting either or both a kinetic-dominated period and an inflation period. Our analysis is based on
semiclassical WKB solutions of the Wheeler-DeWitt equation interpreted in the sense of Borel (to
perform a correct connection between classically allowed regions) and on the relationship of these
solutions to the solutions of the classical model. For large values of the scale factor the WKB Vilenkin
tunneling wave function and the Hartle-Hawking no-boundary wave functions are recovered as particular instances of our class of wave functions.
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