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The tensor hierarchy algebra

2013/04/30 by Jakob Palmkvist · 1 citation
Physics and Astronomy · Mathematics · #hep-th #math.RA

paper · pdf · doi:10.1063/1.4858335

published as J. Math. Phys. 55, 011701 (2014) · 32 pages

arxiv created 2013/04/30 · arxiv updated 2014/02/18

Abstract

We introduce an infinite-dimensional Lie superalgebra which is an extension of the U-duality Lie algebra of maximal supergravity in D dimensions, for D between 3 and 7. The level decomposition with respect to the U-duality Lie algebra gives exactly the tensor hierarchy of representations that arises in gauge deformations of the theory described by an embedding tensor, for all positive levels p. We prove that these representations are always contained in those coming from the associated Borcherds-Kac-Moody superalgebra, and we explain why some of the latter representations are not included in the tensor hierarchy. The most remarkable feature of our Lie superalgebra is that it does not admit a triangular decomposition like a (Borcherds-)Kac-Moody (super)algebra. Instead the Hodge duality relations between level p and D-2-p extend to negative p, relating the representations at the first two negative levels to the supersymmetry and closure constraints of the embedding tensor.

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