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Unified Maxwell-Einstein and Yang-Mills-Einstein Supergravity Theories in Five Dimensions

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arxiv hep-th/0304109 v2 pith:V7CD5JL6 submitted 2003-04-10 hep-th hep-ph

classification hep-thhep-ph
keywords theoriesunifiedsupergravityinfinitemesgtsfamiliesfourmaxwell-einstein
verification ladder T0 review T1 audit T2 compute T3 formal

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Unified N=2 Maxwell-Einstein supergravity theories (MESGTs) are supergravity theories in which all the vector fields, including the graviphoton, transform in an irreducible representation of a simple global symmetry group of the Lagrangian. As was established long time ago, in five dimensions there exist only four unified Maxwell-Einstein supergravity theories whose target manifolds are symmetric spaces. These theories are defined by the four simple Euclidean Jordan algebras of degree three. In this paper, we show that, in addition to these four unified MESGTs with symmetric target spaces, there exist three infinite families of unified MESGTs as well as another exceptional one. These novel unified MESGTs are defined by non-compact (Minkowskian) Jordan algebras, and their target spaces are in general neither symmetric nor homogeneous. The members of one of these three infinite families can be gauged in such a way as to obtain an infinite family of unified N=2 Yang-Mills-Einstein supergravity theories, in which all vector fields transform in the adjoint representation of a simple gauge group of the type SU(N,1). The corresponding gaugings in the other two infinite families lead to Yang-Mills-Einstein supergravity theories coupled to tensor multiplets.

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  1. Exceptionality, Supersymmetry and Non-associativity in Physics

    hep-th 2025-07 conditional novelty 2.0 of 10

    A survey connecting the exceptional Jordan algebra, magical supergravities, and non-associative magnetic and R-flux algebras in string and M-theory.

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