A path integral formula of quantum gravity emergent from entangled local structures

Fuente: arXiv
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Main Authors: Liu, Jinglong, Alexander, Stephon, Marciano, Antonino, Pasechnik, Roman
Format: Preprint
Published: 2023
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author Liu, Jinglong
Alexander, Stephon
Marciano, Antonino
Pasechnik, Roman
author_facet Liu, Jinglong
Alexander, Stephon
Marciano, Antonino
Pasechnik, Roman
contents We couple to group field theory (GFT) a scalar field that encodes the entanglement between manifold sites. The scalar field provides a relational clock that enables the derivation of the Hamiltonian of the system from the GFT action. Inspecting the Hamiltonian, we show that a theory of emergent gravity arises, and that this can be recast according to the Ashtekar's formulation of general relativity. The evolution of the GFT observables is regulated by the Shroedinger equation generated by the Hamiltonian. This is achieved by imposing a renormalization group (RG) flow that corresponds to a simplified Ricci flow. As a consequence of the quantization procedure, the Hamiltonian is recovered to be non-Hermitian, and can be related to the complex action formalism, in which the initial conditions and the related future evolution of the systems are dictated by the imaginary part of the action.
format Preprint
id arxiv_https___arxiv_org_abs_2304_10865
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle A path integral formula of quantum gravity emergent from entangled local structures
Liu, Jinglong
Alexander, Stephon
Marciano, Antonino
Pasechnik, Roman
High Energy Physics - Theory
General Relativity and Quantum Cosmology
Quantum Physics
We couple to group field theory (GFT) a scalar field that encodes the entanglement between manifold sites. The scalar field provides a relational clock that enables the derivation of the Hamiltonian of the system from the GFT action. Inspecting the Hamiltonian, we show that a theory of emergent gravity arises, and that this can be recast according to the Ashtekar's formulation of general relativity. The evolution of the GFT observables is regulated by the Shroedinger equation generated by the Hamiltonian. This is achieved by imposing a renormalization group (RG) flow that corresponds to a simplified Ricci flow. As a consequence of the quantization procedure, the Hamiltonian is recovered to be non-Hermitian, and can be related to the complex action formalism, in which the initial conditions and the related future evolution of the systems are dictated by the imaginary part of the action.
title A path integral formula of quantum gravity emergent from entangled local structures
topic High Energy Physics - Theory
General Relativity and Quantum Cosmology
Quantum Physics
url https://arxiv.org/abs/2304.10865