Tunnelling and the Casimir effect on a -dimensional sphere
arXiv:2408.17189
Abstract
Two fundamental signatures of Quantum Mechanics are tunnelling and the Casimir effect. We examine the ground state energetic properties of a scalar field confined on a -dimensional sphere, and subjected to these two effects. We focus on and , with a non-minimal coupling of a massless scalar field to curvature, which provides a radius-dependent effective mass. This scenario allows tunnelling to be more important than the Casimir effect, in a certain regime of parameters, and potential implications in Early Cosmology are discussed for the case , which could avoid a cosmological singularity.
5 pages, 2 figures