arXiv · 2107.07777
Effective Actions for Loop Quantum Cosmology in Fourth-Order Gravity
Abstract
Loop Quantum Cosmology (LQC) is a theory which renders the Big Bang initial singularity into a quantum bounce, by means of short range repulsive quantum effects at the Planck scale. In this work, we are interested in reproducing the effective Friedmann equation of LQC, by considering a generic $f(R,P,Q)$ theory of gravity, where $R=g^{\mu\nu}R_{\mu\nu}$ is the Ricci scalar, $P=R_{\mu\nu}R^{\mu\nu}$, and $Q=R_{\alpha\beta\mu\nu}R^{\alpha\beta\mu\nu}$ is the Kretschmann scalar. An order reduction technique allows us to work in $f(R,P,Q)$ theories which are perturbatively close to General Relativity, and to deduce a modified Friedmann equation in the reduced theory. Requiring that the modified Friedmann equation mimics the effective Friedmann equation of LQC, we are able to derive several functional forms of $f(R,P,Q)$. We discuss the necessary conditions to obtain viable bouncing cosmologies for the proposed effective actions of $f(R,P,Q)$ theory of gravity.
Explore related subjects
Keep this discovery
Marcello Miranda, Daniele Vernieri, Salvatore Capozziello, Francisco S. N. Lobo. 2021-07-16. Effective Actions for Loop Quantum Cosmology in Fourth-Order Gravity. https://doi.org/10.1140/epjc%2Fs10052-021-09767-5
Cite the original work for its findings. Save a collection to share your selection of sources.