4.4 Article

Infinite order quantum-gravitational correlations

Journal

CLASSICAL AND QUANTUM GRAVITY
Volume 35, Issue 11, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/1361-6382/aabaa0

Keywords

asymptotic safety; renormalisation group; nonperturbative effects

Funding

  1. Deutsche Forschungsgemeinschaft (DFG) graduate school [GRK 1523/2]
  2. DFG [Wi 777/11]
  3. Netherlands Organisation for Scientific Research (NWO) within the Foundation for Fundamental Research on Matter (FOM) [13VP12]

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A new approximation scheme for nonperturbative renormalisation group equations for quantum gravity is introduced. Correlation functions of arbitrarily high order can be studied by resolving the full dependence of the renormalisation group equations on the fluctuation field (graviton). This is reminiscent of a local potential approximation in O(N)-symmetric field theories. As a first proof of principle, we derive the flow equation for the `graviton potential' induced by a conformal fluctuation and corrections induced by a gravitational wave fluctuation. Indications are found that quantum gravity might be in a non-metric phase in the deep ultraviolet. The present setup significantly improves the quality of previous fluctuation vertex studies by including infinitely many couplings, thereby testing the reliability of schemes to identify different couplings to close the equations, and represents an important step towards the resolution of the Nielsen identity. The setup further allows one, in principle, to address the question of putative gravitational condensates.

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