We set up a canonical Hamiltonian formulation for a theory of gravity based on a Lagrangian density made up of the Hilbert-Palatini term and, instead of the Holst term, the Nieh-Yan topological density. The resulting set of constraints in the time gauge are shown to lead to a theory in terms of a real SU(2) connection which is exactly the same as that of Barbero and Immirzi with the coefficient of the Nieh-Yan term identified as the inverse of the Barbero-Immirzi parameter. This provides a topological interpretation for this parameter. Matter coupling can then be introduced in the usual manner, without changing the universal topological Nieh-Yan term
Recently, we have proposed models of topological field theory including gravity in Mod. Phys. Lett. ...
In arXiv:1601.02203 and arXiv:1702.07063, we have proposed a topological model with a simple Lagrang...
An so(4,C)-covariant hamiltonian formulation of a family of generalized Hilbert-Palatini actions dep...
We set up a canonical Hamiltonian formulation for a theory of gravity based on a Lagrangian density ...
A Hamiltonian description of the N=1 supergravity theory containing the topological Nieh-Yan term in...
International audienceWe study the Hamiltonian formulation of the generally covariant theory defined...
22 pagesIn this note, we review the canonical analysis of the Holst action in the time gauge, with a...
The 1-parameter family of transformations identified by Barbero and Immirzi plays a significant role...
12 pages, no figuresWe shall here discuss a new spacetime gauge-covariant Lagrangian formulation of ...
Restricted Access.This letter is a critique of Barbero's constrained Hamiltonian formulation of gene...
13 pagesThe Barbero-Immirzi (BI) connection, as usually introduced out of a spin connection, is a gl...
The canonical analysis of the (anti-) self-dual action for gravity supplemented with the (anti-) sel...
International audienceWe study the Hamiltonian formulation of the general first order action of gene...
In order to consistently introduce an interaction between gravity and fermions in the Ashtekar-Barbe...
The Immirzi parameter of loop quantum gravity is a one-parameter ambiguity of the theory whose preci...
Recently, we have proposed models of topological field theory including gravity in Mod. Phys. Lett. ...
In arXiv:1601.02203 and arXiv:1702.07063, we have proposed a topological model with a simple Lagrang...
An so(4,C)-covariant hamiltonian formulation of a family of generalized Hilbert-Palatini actions dep...
We set up a canonical Hamiltonian formulation for a theory of gravity based on a Lagrangian density ...
A Hamiltonian description of the N=1 supergravity theory containing the topological Nieh-Yan term in...
International audienceWe study the Hamiltonian formulation of the generally covariant theory defined...
22 pagesIn this note, we review the canonical analysis of the Holst action in the time gauge, with a...
The 1-parameter family of transformations identified by Barbero and Immirzi plays a significant role...
12 pages, no figuresWe shall here discuss a new spacetime gauge-covariant Lagrangian formulation of ...
Restricted Access.This letter is a critique of Barbero's constrained Hamiltonian formulation of gene...
13 pagesThe Barbero-Immirzi (BI) connection, as usually introduced out of a spin connection, is a gl...
The canonical analysis of the (anti-) self-dual action for gravity supplemented with the (anti-) sel...
International audienceWe study the Hamiltonian formulation of the general first order action of gene...
In order to consistently introduce an interaction between gravity and fermions in the Ashtekar-Barbe...
The Immirzi parameter of loop quantum gravity is a one-parameter ambiguity of the theory whose preci...
Recently, we have proposed models of topological field theory including gravity in Mod. Phys. Lett. ...
In arXiv:1601.02203 and arXiv:1702.07063, we have proposed a topological model with a simple Lagrang...
An so(4,C)-covariant hamiltonian formulation of a family of generalized Hilbert-Palatini actions dep...