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Quantum Cosmology with Dynamical Vacuum in a Minimal-Length Scenario

Published 16 Dec 2020 in gr-qc | (2012.09158v2)

Abstract: In this work, we consider effects of the dynamical vacuum in quantum cosmology in presence of a minimum length introduced by the GUP (generalized uncertainty principle) related to the modified commutation relation $[\hat{X},\hat{P}] := \frac{i\hbar}{ 1 - \beta\hat{P}2 }$ . We determine the wave function of the Universe $ \psi_{qp}(\xi,t)$, which is solution of the modified Wheeler-DeWitt equation in the representation of the quasi-position space, in the limit where the scale factor of the Universe is small. Although $\psi_{qp}(\xi,t)$ is a physically acceptable state it is not a realizable state of the Universe because $ \psi_{qp}(\xi,t)$ has infinite norm, as in the ordinary case with no minimal length.

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