On semi-classical states of quantum gravity and noncommutative geometry

Johannes Aastrup, Jesper Møller Grimstrup, Mario Paschke, Ryszard Nest

5 Citationer (Scopus)

Abstract

We construct normalizable, semi-classical states for the previously proposed model of quantum gravity which is formulated as a spectral triple over holonomy loops. The semi-classical limit of the spectral triple gives the Dirac Hamiltonian in 3+1 dimensions. Also, time-independent lapse and shift fields emerge from the semi-classical states. Our analysis shows that the model might contain fermionic matter degrees of freedom. The semi-classical analysis presented in this paper does away with most of the ambiguities found in the initial semi-finite spectral triple construction. The cubic lattices play the role of a coordinate system and a divergent sequence of free parameters found in the Dirac type operator is identified as a certain inverse infinitesimal volume element.

OriginalsprogEngelsk
TidsskriftCommunications in Mathematical Physics
Vol/bind302
Udgave nummer3
Sider (fra-til)675-696
Antal sider30
ISSN0010-3616
StatusUdgivet - mar. 2011

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