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Quantum Gravity on the Lattice

3 Pith papers cite this work. Polarity classification is still indexing.

3 Pith papers citing it
abstract

I review the lattice approach to quantum gravity, and how it relates to the non-trivial ultraviolet fixed point scenario of the continuum theory. After a brief introduction covering the general problem of ultraviolet divergences in gravity and other non-renormalizable theories, I cover the general methods and goals of the lattice approach. An underlying theme is the attempt at establishing connections between the continuum renormalization group results, which are mainly based on diagrammatic perturbation theory, and the recent lattice results, which apply to the strong gravity regime and are inherently non-perturbative. A second theme in this review is the ever-present natural correspondence between infrared methods of strongly coupled non-abelian gauge theories on the one hand, and the low energy approach to quantum gravity based on the renormalization group and universality of critical behavior on the other. Towards the end of the review I discuss possible observational consequences of path integral quantum gravity, as derived from the non-trivial ultraviolet fixed point scenario. I argue that the theoretical framework naturally leads to considering a weakly scale-dependent Newton's costant, with a scaling violation parameter related to the observed scaled cosmological constant (and not, as naively expected, to the Planck length).

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fields

hep-th 2 gr-qc 1

years

2026 3

roles

background 2

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background 2

representative citing papers

Towards gauge independence in asymptotically safe quantum gravity

hep-th · 2026-07-07 · conditional · novelty 6.0

In an essential proper-time scheme, gauge dependence of the flow for Newton's constant cancels order-by-order once redundant off-shell terms are absorbed by field redefinitions, leaving a gauge-independent non-Gaussian fixed point.

Collective excitations in quantum gravity condensates

gr-qc · 2026-05-18 · unverdicted · novelty 6.0

Collective excitations analogous to phonons are derived in quantum gravity condensates within a group field theory model, yielding leading beyond-mean-field corrections to emergent Friedmann dynamics.

citing papers explorer

Showing 3 of 3 citing papers.

  • Towards gauge independence in asymptotically safe quantum gravity hep-th · 2026-07-07 · conditional · none · ref 86 · internal anchor

    In an essential proper-time scheme, gauge dependence of the flow for Newton's constant cancels order-by-order once redundant off-shell terms are absorbed by field redefinitions, leaving a gauge-independent non-Gaussian fixed point.

  • Collective excitations in quantum gravity condensates gr-qc · 2026-05-18 · unverdicted · none · ref 47 · internal anchor

    Collective excitations analogous to phonons are derived in quantum gravity condensates within a group field theory model, yielding leading beyond-mean-field corrections to emergent Friedmann dynamics.

  • Asymptotically safe quantum gravity and its phenomenology -- a review hep-th · 2026-06-19 · unverdicted · none · ref 99 · internal anchor

    Review surveying progress toward realistic asymptotically safe quantum gravity with quantum scale symmetry and observational implications.