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Classical space-time geometry and the weak gravity regime in the IKKT matrix model

Autor(en)
Harold C. Steinacker
Abstrakt

We discuss the reconstruction of generic 3+1-dimensional space-time geometries from covariant quantum spaces as backgrounds in the IKKT matrix model. Generic classical geometries can be realized within the weak gravity regime, without inducing significant higher-spin contributions. In the strong gravity regime i.e. for strong curvature, the background acquires significant higher spin contributions, so that the classical geometry is no longer adequate. Assuming that the scale of noncommutativity is given by the Planck scale, the weak gravity regime is bounded by a curvature scale of the order 10−4m, and easily compatible with known gravitational physics. This justifies the framework for emergent gravity given by the semi-classical matrix model, supplemented by an induced Einstein-Hilbert action which arises in the presence of fuzzy extra dimensions.

Organisation(en)
Mathematische Physik
Journal
Proceedings of Science
Band
406
Anzahl der Seiten
23
DOI
https://doi.org/10.22323/1.406.0232
Publikationsdatum
11-2022
Peer-reviewed
Ja
ÖFOS 2012
103012 Hochenergiephysik, 103028 Relativitätstheorie
ASJC Scopus Sachgebiete
General
Link zum Portal
https://ucrisportal.univie.ac.at/de/publications/bc475e1f-479c-4da9-b795-7d501ee41bf2