Parisi-Sourlas-like dimensional reduction of quantum gravity in the presence of observers
arXiv:2004.09708 · doi:10.1088/1475-7516/2021/05/048
Abstract
One of the sources of incompatibility between general relativity and quantum mechanics is perturbative non-renormalizability of quantum gravity in spacetime dimensions. Here, we show that in the presence of disorder induced by random networks of observers measuring covariant quantities (such as scalar curvature) -dimensional quantum gravity exhibits an effective dimensional reduction at large spatio-temporal scales, which is analogous to the Parisi-Sourlas phenomenon observed for quantum field theories in random external fields. After averaging over associated disorder and focusing on the infrared dynamics of the theory we find that the upper critical dimension of quantum gravity is lifted from to dimensions.
29 pages, 1 figure; discussion extended
References in corpus (7)
- The Standard Model Higgs boson as the inflaton
- Inflation scenario via the Standard Model Higgs boson and LHC
- On the divergences of inflationary superhorizon perturbations
- Quantum Gravity on the Lattice
- Infrared instability of the de Sitter space
- Closed Strings and Weak Gravity from Higher-Spin Causality
- Specific-heat exponent and modified hyperscaling in the 4D random-field Ising model