arXiv · 1203.6164
Intersecting Quantum Gravity with Noncommutative Geometry - a Review
Abstract
We review applications of noncommutative geometry in canonical quantum gravity. First, we show that the framework of loop quantum gravity includes natural noncommutative structures which have, hitherto, not been explored. Next, we present the construction of a spectral triple over an algebra of holonomy loops. The spectral triple, which encodes the kinematics of quantum gravity, gives rise to a natural class of semiclassical states which entail emerging fermionic degrees of freedom. In the particular semiclassical approximation where all gravitational degrees of freedom are turned off, a free fermionic quantum field theory emerges. We end the paper with an extended outlook section.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Johannes Aastrup, Jesper M. Grimstrup. 2012-03-28. Intersecting Quantum Gravity with Noncommutative Geometry - a Review. https://doi.org/10.3842/sigma.2012.018
Cite the original work for its findings. Save a collection to share your selection of sources.