Towards Loop Quantum Supergravity (LQSG) II. p-Form Sector
arXiv:1105.3710 · doi:10.1088/0264-9381/30/4/045007
Abstract
In our companion paper, we focussed on the quantisation of the Rarita-Schwinger sector of Supergravity theories in various dimensions by using an extension of Loop Quantum Gravity to all spacetime dimensions. In this paper, we extend this analysis by considering the quantisation of additional bosonic fields necessary to obtain a complete SUSY multiplet next to graviton and gravitino in various dimensions. As a generic example, we study concretely the quantisation of the 3-index photon of 11d SUGRA, but our methods easily extend to more general p-form fields. Due to the presence of a Chern-Simons term for the 3-index photon, which is due to local SUSY, the theory is self-interacting and its quantisation far from straightforward. Nevertheless, we show that a reduced phase space quantisation with respect to the 3-index photon Gauss constraint is possible. Specifically, the Weyl algebra of observables, which deviates from the usual CCR Weyl algebras by an interesting twist contribution proportional to the level of the Chern-Simons theory, admits a background independent state of the Narnhofer-Thirring type.
12 pages. v2: Journal version. Minor clarifications and corrections
References in corpus (1)
Cited by in corpus (12)
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- Super Cartan geometry and the super Ashtekar connection
- Supergravity with LQG methods and quantization of the SUSY constraint
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