Renormalization of 3d quantum gravity from matrix models
Publication date
2003-07-27
Authors
Ambjørn, J.
Jurkiewicz, J.
Loll, R.
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DOI
Document Type
Preprint
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Abstract
Lorentzian simplicial quantum gravity is a non-perturbatively defined theory of
quantum gravity which predicts a positive cosmological constant. Since the approach
is based on a sum over space-time histories, it is perturbatively non-renormalizable
even in three dimensions. By mapping the three-dimensional theory to a two-matrix
model with ABAB interaction we show that both the cosmological and the (perturbatively)
non-renormalizable gravitational coupling constant undergo additive
renormalizations consistent with canonical quantization.