Not so non-renormalizable gravity
arXiv:0805.4545 · doi:10.1007/978-3-7643-8736-5_9
Abstract
We review recent progress with the understanding of quantum fields, including ideas how gravity might turn out to be a renormalizable theory after all.
7 pages
References in corpus (12)
- The Asymptotic Safety Scenario in Quantum Gravity -- An Introduction
- Background Independence and Asymptotic Safety in Conformally Reduced Gravity
- Renormalization of gauge fields: A Hopf algebra approach
- An Étude in non-linear Dyson--Schwinger Equations
- Hopf algebras in renormalization theory: Locality and Dyson-Schwinger equations from Hochschild cohomology
- Mixed Hodge Structures and Renormalization in Physics
- Dyson Schwinger Equations: From Hopf algebras to Number Theory
- The QED beta-function from global solutions to Dyson-Schwinger equations
- Recursion and growth estimates in renormalizable quantum field theory
- On the Brownian gas: a field theory with a Poissonian ground state
- The QCD beta-function from global solutions to Dyson-Schwinger equations
- A remark on quantum gravity
Cited by in corpus (7)
- Recursive relations in the core Hopf algebra
- The structure of renormalization Hopf algebras for gauge theories I: Representing Feynman graphs on BV-algebras
- Notes on "quantum gravity" and non-commutative geometry
- Gauge Symmetries and Renormalization
- Field diffeomorphisms and the algebraic structure of perturbative expansions
- Propagator-cancelling scalar fields
- Astro- and Quantum Physical Tests of Screened Scalar Fields