ID: hep-th/9606108

A Canticle on (4,0) Supergravity-Scalar Multiplet Systems for a ``Cognoscente''

June 18, 1996

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Off-shell superconformal higher spin multiplets in four dimensions

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Sergei M. Kuzenko, Ruben Manvelyan, Stefan Theisen
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We formulate off-shell N=1 superconformal higher spin multiplets in four spacetime dimensions and briefly discuss their coupling to conformal supergravity. As an example, we explicitly work out the coupling of the superconformal gravitino multiplet to conformal supergravity. The corresponding action is super-Weyl invariant for arbitrary supergravity backgrounds. However, it is gauge invariant only if the supersymmetric Bach tensor vanishes. This is similar to linearised confo...

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Jean-Pierre Derendinger
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An introduction to and a partial review of supergravity theories is given, insisting on concepts and on some important technical aspects. Topics covered include elements of global supersymmetry, a derivation of the simplest N=1 supergravity theory, a discussion of N=1 matter-supergravity couplings, of the scalar sector and of some simple models. Space-time is four-dimensional.

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Supergravity, Linear Multiplets, and Chern-Simons Forms

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R. Grimm
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Some general features of locally supersymmetric theories (N=1 in four dimensions) involving Chern-Simons forms and antisymmetric tensors are sketched out. The relevance of the three-form multiplet both for the description of Chern-Simons forms and the supersymmetry properties of the gaugino condensate is pointed out.

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Recent advances in curved N=2 superspace methods have rendered the component reduction of superspace actions more feasible than in the past. In this paper, we consider models involving both vector and tensor multiplets coupled to supergravity and demonstrate explicitly how component actions may be efficiently obtained. In addition, tensor multiplets coupled to conformal supergravity are considered directly within projective superspace, where their formulation is most natural....

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Self-Dual Yang-Mills Multiplet in Three Dimensions Coupled to Supergravity

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Roy Montalvo, Hitoshi Nishino, Subhash Rajpoot
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We couple a recently-established N=1 globally supersymmetric self-dual Yang-Mills multiplet in three dimensions to supergravity. This becomes possible due to our previous result on globally supersymmetric formulation based on a compensator multiplet. We further couple the self-dual vector to a supersymmetric sigma-model on the coset SO(8,n) / SO(8) X SO(n) via minimal couplings for an arbitrary gauged subgroup H_0 \subset SO(8) X SO(n). A corresponding superspace formulation ...

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Gabriele Tartaglino-Mazzucchelli
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We propose a new superspace formulation for N=(4,4) conformal supergravity in two dimensions. This is based on a geometry where the structure group of the curved superspace is chosen to be SO(1,1) x SU(2)_L x SU(2)_R. The off-shell supergravity multiplet possesses super-Weyl transformations generated by an unconstrained real scalar superfield. The new supergravity formulation turns out to be an extension of the minimal multiplet introduced in 1988 by Gates et. al. and it allo...

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Some Properties of Tensor Multiplets in Six-Dimensional Supergravity

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Fabio U. Roma "Tor Vergata" Riccioni, Augusto U. Roma "Tor Vergata" Sagnotti
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We review some results on the complete coupling between tensor and vector multiplets in six-dimensional $(1,0)$ supergravity.

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The Off-shell (3/2, 2) Supermultiplets Revisited

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S. James Jr. Gates,, Sergei M. Kuzenko, J. Phillips
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Using superspace projection operators we provide a classification of (3/2,2) off-shell supermultiplets which are realized in terms of a real axial vector superfield, with or without compensating superfields. Any linearized supergravity action is shown to be a superposition of those corresponding to (i) old minimal supergravity, (ii) new minimal supergravity and (iii) the novel (3/2,2) off-shell supermultiplet with 12+12 degrees of freedom obtained in hep-th/0201096.

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Four dimensional supersymmetrization of R^4

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Filipe Moura
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We review our recent works on the supersymmetrization of the leading string correction (the R^4 term) to N=1,2 supergravity theories in four dimensions. We show that, in the "old minimal" formulations of these theories, when going on-shell in the presence of this correction, the auxiliary fields which come from multiplets with physical fields cannot be eliminated, but those ones that come from compensating multiplets without any physical fields can be eliminated. We conjectur...

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Components of curvature-squared invariants of minimal supergravity in five dimensions

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Gregory Gold, Jessica Hutomo, ... , Tartaglino-Mazzucchelli Gabriele
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We present for the first time the component structure of the supersymmetric completions for all curvature-squared invariants of five-dimensional, off-shell (gauged) minimal supergravity, including all fermions. This is achieved by using an interplay between superspace and superconformal tensor calculus techniques, and by employing results from arXiv:1410.8682 and arXiv:2302.14295. Our analysis is based on using a standard Weyl multiplet of conformal supergravity coupled to a ...

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