I argue that the complete partition function of 3D quantum gravity is given by a path integral over gauge-inequivalent manifolds times the Chern-Simons partition function. In a discrete version, it gives a sum over simplicial complexes weighted with the Turaev-Viro invariant. Then, I discuss how this invariant can be included in the general framework of lattice gauge theory (qQCD$_3$). To make sense of it, one needs a quantum analog of the Peter-Weyl theorem and an invariant measure, which are introduced explicitly. The consideration here is limited to the simplest and most interesting case of $SL_q(2)$, $q=e^{i\frac{2\pi}{k+2}}$. At the end, I dwell on 3D generalizations of matrix models
Abstract. We outline some aspects of a dilogarithmic quantum field the-ory (DQFT) for a 2+1 bordism ...
These notes summarise a talk surveying the combinatorial or Hamiltonian quantisation of three dimens...
International audienceWe introduce a new gauge and solution space for three-dimensional gravity. As ...
It is shown that, in the three-dimensional lattice gravity defined by Ponzano and Regge, the space o...
I discuss some aspects of a lattice approach to canonical quantum gravity in a connection formulatio...
Three-dimensional gravity is a topological field theory, which can be quantized as the Ponzano-Regge...
It is shown that, in the three-dimensional lattice gravity defined by Ponzano and Regge, the space o...
It is shown that, in the three-dimensional lattice gravity defined by Ponzano and Regge, the space o...
We argue that a certain twisted supersymmetric Yang-Mills theory in three dimensions with gauge grou...
A quantum deformation of 3-dimensional lattice gauge theory is defined by applying the Reshetikhin-T...
We study partition functions of 3d gauge theories on compact manifolds which are S (1) fibrations ov...
We study partition functions of 3d gauge theories on compact manifolds which are S (1) fibrations ov...
We study partition functions of 3d gauge theories on compact manifolds which are S (1) fibrations ov...
A new functional calculus, developed recently for a fully non-perturbative treatment of quantum grav...
We study two-dimensional models of quantum gravity from different perspectives. In the first half, w...
Abstract. We outline some aspects of a dilogarithmic quantum field the-ory (DQFT) for a 2+1 bordism ...
These notes summarise a talk surveying the combinatorial or Hamiltonian quantisation of three dimens...
International audienceWe introduce a new gauge and solution space for three-dimensional gravity. As ...
It is shown that, in the three-dimensional lattice gravity defined by Ponzano and Regge, the space o...
I discuss some aspects of a lattice approach to canonical quantum gravity in a connection formulatio...
Three-dimensional gravity is a topological field theory, which can be quantized as the Ponzano-Regge...
It is shown that, in the three-dimensional lattice gravity defined by Ponzano and Regge, the space o...
It is shown that, in the three-dimensional lattice gravity defined by Ponzano and Regge, the space o...
We argue that a certain twisted supersymmetric Yang-Mills theory in three dimensions with gauge grou...
A quantum deformation of 3-dimensional lattice gauge theory is defined by applying the Reshetikhin-T...
We study partition functions of 3d gauge theories on compact manifolds which are S (1) fibrations ov...
We study partition functions of 3d gauge theories on compact manifolds which are S (1) fibrations ov...
We study partition functions of 3d gauge theories on compact manifolds which are S (1) fibrations ov...
A new functional calculus, developed recently for a fully non-perturbative treatment of quantum grav...
We study two-dimensional models of quantum gravity from different perspectives. In the first half, w...
Abstract. We outline some aspects of a dilogarithmic quantum field the-ory (DQFT) for a 2+1 bordism ...
These notes summarise a talk surveying the combinatorial or Hamiltonian quantisation of three dimens...
International audienceWe introduce a new gauge and solution space for three-dimensional gravity. As ...