Towards a phase diagram for spin foams
release_zin4v5lzy5dxfcbtwlpppakkhm
by
Clement Delcamp,
Bianca Dittrich
2016
Abstract
One of the most pressing issues for loop quantum gravity and spin foams is
the construction of the continuum limit. In this paper, we propose a systematic
coarse-graining scheme for three-dimensional lattice gauge models including
spin foams. This scheme is based on the concept of decorated tensor networks,
which have been introduced recently. Here we develop an algorithm applicable to
gauge theories with non-Abelian groups, which for the first time allows for the
application of tensor network coarse-graining techniques to proper spin foams.
The procedure deals efficiently with the large redundancy of degrees of freedom
resulting from gauge symmetry. The algorithm is applied to 3D spin foams
defined on a cubical lattice which, in contrast to a proper triangulation,
allows for non--trivial simplicity constraints. This mimics the construction of
spin foams for 4D gravity. For lattice gauge models based on a finite group we
use the algorithm to obtain phase diagrams, encoding the continuum limit of a
wide range of these models. We find phase transitions for various families of
models carrying non--trivial simplicity constraints.
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