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Transgression forms and extensions of Chern-Simons gauge theories

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arxiv hep-th/0601081 v2 pith:XFW2WF2D submitted 2006-01-12 hep-th

Transgression forms and extensions of Chern-Simons gauge theories

classification hep-th
keywords actiongaugechern-simonsapproachblackformsholeinvariant
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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A gauge invariant action principle, based on the idea of transgression forms, is proposed. The action extends the Chern-Simons form by the addition of a boundary term that makes the action gauge invariant (and not just quasi-invariant). Interpreting the spacetime manifold as cobordant to another one, the duplication of gauge fields in spacetime is avoided. The advantages of this approach are particularly noticeable for the gravitation theory described by a Chern-Simons lagrangian for the AdS group, in which case the action is regularized and finite for black hole geometries in diverse situations. Black hole thermodynamics is correctly reproduced using either a background field approach or a background-independent setting, even in cases with asymptotically nontrivial topologies. It is shown that the energy found from the thermodynamic analysis agrees with the surface integral obtained by direct application of Noether's theorem.

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Cited by 1 Pith paper

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