The action of the (free) (4, 0)-theory

Abstract The (4, 0) theory in six dimensions is an exotic theory of supergravity that has been argued to emerge as the strong coupling limit of theories having N = 8 supergravity as their low energy effective theory in five spacetime dimensions. It has maximal supersymmetry and is superconformal. Ve...

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Main Authors: Marc Henneaux, Victor Lekeu, Amaury Leonard
Format: Article
Language:English
Published: SpringerOpen 2018-01-01
Series:Journal of High Energy Physics
Subjects:
Online Access:http://link.springer.com/article/10.1007/JHEP01(2018)114
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spelling doaj-10dcf307acc348888e926ce33f02bd122020-11-24T21:34:57ZengSpringerOpenJournal of High Energy Physics1029-84792018-01-012018112910.1007/JHEP01(2018)114The action of the (free) (4, 0)-theoryMarc Henneaux0Victor Lekeu1Amaury Leonard2Université Libre de Bruxelles and International Solvay InstitutesUniversité Libre de Bruxelles and International Solvay InstitutesUniversité Libre de Bruxelles and International Solvay InstitutesAbstract The (4, 0) theory in six dimensions is an exotic theory of supergravity that has been argued to emerge as the strong coupling limit of theories having N = 8 supergravity as their low energy effective theory in five spacetime dimensions. It has maximal supersymmetry and is superconformal. Very little is known about this intriguing theory. While the spectrum of fields occurring in its description has been given and their equations of motion in the absence of interactions have been written down, no action principle has been formulated, even in the free case. We extend here previous analyses by writing explicitly the action of the free (4, 0) theory from which the equations of motion derive. The variables of the variational principle are prepotentials adapted to the self-duality properties of the fields. The “exotic gravitini”, described by chiral fermionic two-forms, are given special attention. The supersymmetry transformations are written down and the invariance of the action is explicitly proven. Even though the action is not manifestly covariant, the symmetry transformations are shown to close according to the (4, 0)-extended Poincaré supersymmetry algebra. We also discuss exotic supergravity models with fewer supersymmetries. Remarks on dimensional reduction close the paper.http://link.springer.com/article/10.1007/JHEP01(2018)114Extended SupersymmetryField Theories in Higher DimensionsSupersymmetry and Duality
collection DOAJ
language English
format Article
sources DOAJ
author Marc Henneaux
Victor Lekeu
Amaury Leonard
spellingShingle Marc Henneaux
Victor Lekeu
Amaury Leonard
The action of the (free) (4, 0)-theory
Journal of High Energy Physics
Extended Supersymmetry
Field Theories in Higher Dimensions
Supersymmetry and Duality
author_facet Marc Henneaux
Victor Lekeu
Amaury Leonard
author_sort Marc Henneaux
title The action of the (free) (4, 0)-theory
title_short The action of the (free) (4, 0)-theory
title_full The action of the (free) (4, 0)-theory
title_fullStr The action of the (free) (4, 0)-theory
title_full_unstemmed The action of the (free) (4, 0)-theory
title_sort action of the (free) (4, 0)-theory
publisher SpringerOpen
series Journal of High Energy Physics
issn 1029-8479
publishDate 2018-01-01
description Abstract The (4, 0) theory in six dimensions is an exotic theory of supergravity that has been argued to emerge as the strong coupling limit of theories having N = 8 supergravity as their low energy effective theory in five spacetime dimensions. It has maximal supersymmetry and is superconformal. Very little is known about this intriguing theory. While the spectrum of fields occurring in its description has been given and their equations of motion in the absence of interactions have been written down, no action principle has been formulated, even in the free case. We extend here previous analyses by writing explicitly the action of the free (4, 0) theory from which the equations of motion derive. The variables of the variational principle are prepotentials adapted to the self-duality properties of the fields. The “exotic gravitini”, described by chiral fermionic two-forms, are given special attention. The supersymmetry transformations are written down and the invariance of the action is explicitly proven. Even though the action is not manifestly covariant, the symmetry transformations are shown to close according to the (4, 0)-extended Poincaré supersymmetry algebra. We also discuss exotic supergravity models with fewer supersymmetries. Remarks on dimensional reduction close the paper.
topic Extended Supersymmetry
Field Theories in Higher Dimensions
Supersymmetry and Duality
url http://link.springer.com/article/10.1007/JHEP01(2018)114
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