Topological gravity and transgression holography

Salgado, P.; Szabo, RJ; Valdivia, O

Abstract

We show that Poincare-invariant topological gravity in even dimensions can be formulated as a transgression field theory in one higher dimension whose gauge connections are associated to linear and nonlinear realizations of the Poincare group ISO(d - 1, 1). The resulting theory is a gauged Wess-Zumino-Witten (WZW) model whereby the transition functions relating gauge fields live in the coset ISO(d-1,1)/SO(d-1,1).The coordinate parametrizing the coset space is identified with the scalar field in the adjoint representation of the gauge group of the even-dimensional topological gravity theory. The supersymmetric extension leads to topological supergravity in two dimensions starting from a transgression field theory which is invariant under the supersymmetric extension of the Poincare group in three dimensions. We also apply this construction to a three-dimensional Chern-Simons theory of gravity which is invariant under the Maxwell algebra and obtain the corresponding WZW model.

Más información

Título según WOS: Topological gravity and transgression holography
Título según SCOPUS: Topological gravity and transgression holography
Título de la Revista: PHYSICAL REVIEW D
Volumen: 89
Número: 8
Editorial: American Physical Society
Fecha de publicación: 2014
Idioma: English
DOI:

10.1103/PhysRevD.89.084077

Notas: ISI, SCOPUS