Dynamical 4-D Gauss-Bonnet action from matter-graviton interaction at one-loop
arXiv:2402.08965 · doi:10.1140/epjp/s13360-025-06037-1
Abstract
The occurrence of singularities at the centers of black holes suggests that general relativity (GR), although a highly successful model of gravity and cosmology, is inapplicable. This is due to the breakdown of the equivalence principle. Gauss-Bonnet (GB) action is the simplest extension of GR as it possesses second-order equations of motion and is devoid of ghosts. However, in 4-D, the GB action is topological. Recently, Glavan and Lin proposed a mathematical framework that transforms the 4-D GB gravity theory into a non-topological one. However, it has been argued that without a canonical way to choose 4-D from the higher-dimensional space, such a GB gravity is not well-defined in 4-D. Naturally, there has been much interest in having a systematic procedure for making the 4-D GB term non-topological, such as using the counterterm regularization method in 4-D, regularization with the dimensional derivative, and Kaluza-Klein reduction. The current work takes a step in addressing this issue by demonstrating that the rescaling of the GB coupling arises from the self-energy correction of gravitons in 4-D using \emph{only} the established quantum field theoretic techniques. To keep things transparent, we focus on the linearized theory of gravity coupled with matter fields. By computing the one-loop self-energy correction of gravitons induced by the matter fields, we explicitly provide the origin of the prescription provided by Glavan and Lin. We compare the procedure with other regularization procedures like Kaluza-Klein dimensional reduction and conformal scaling regarding the strong coupling problem. Our work naturally opens a new window to considering 4-D Einstein Gauss-Bonnet gravity as the most straightforward modification to GR.
32 pages, 4 figures, 2 appendices added, added references, version accepted in European Physical Journal Plus, results are unchanged
References in corpus (20)
- The Confrontation between General Relativity and Experiment
- Beyond the Cosmological Standard Model
- Matter density perturbations and effective gravitational constant in modified gravity models of dark energy
- Modified gravity models of dark energy
- Modified theories of Gravity: Why, How and What?
- On Taking the limit of Gauss-Bonnet Gravity: Theory and Solutions
- Dark Energy versus Modified Gravity
- The 4D Einstein-Gauss-Bonnet Theory of Gravity: A Review
- Probing modifications of General Relativity using current cosmological observations
- Dark energy from modified gravity with Lagrange multipliers
- Cuscuton Cosmology: Dark Energy meets Modified Gravity
- Dark matter and dark energy as a effects of Modified Gravity
- Gravity with a generalized conformal scalar field: Theory and solutions
- Primordial black holes and scalar induced gravitational waves from the model with a Gauss-Bonnet term
- How to Distinguish Dark Energy and Modified Gravity?
- Maximal momentum GUP leads to quadratic gravity
- Modified gravity, Dark Energy and MOND
- 4D Gauss-Bonnet gravity: cosmological constraints, tension and large scale structure
- Quantum gravitational signatures in next-generation gravitational wave detectors
- The dominating mode of two competing massive modes of quadratic gravity