arXiv · 2512.11712
Cosmic Acceleration from Quantum Gravity: Emergent Inflation and Dynamical Dark Energy
Abstract
We present a mechanism for the emergence of cosmic acceleration within the mean-field approximation of Group Field Theory models of quantum gravity. Depending on the interaction type, the resulting cosmological dynamics can either feature a late-time attractor corresponding to a dynamical dark energy phase, often with characteristic phantom behavior, including in models inspired by simplicial gravity, or instead support an early slow-roll inflationary epoch driven by the same underlying quantum-gravitational effects. This emergent inflation, effectively captured by a single-field description, can sustain the required expansion, naturally avoids the graceful exit problem, and appears to transition into a persistent, non-accelerating phase consistent with classical expectations.
Explore related subjects
Keep this discovery
Luca Marchetti, Tom R. Ladstätter, Daniele Oriti. 2025-12-12. Cosmic Acceleration from Quantum Gravity: Emergent Inflation and Dynamical Dark Energy. https://arxiv.org/abs/2512.11712
Cite the original work for its findings. Save a collection to share your selection of sources.