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N=(4,2) Chiral Supergravity in Six Dimensions and Solvable Lie Algebras
Decomposition of the solvable Lie algebras of maximal supergravities in D=4, 5 and 6 indicates, at least at the geometrical level, the existence of an N=(4,2) chiral supergravity theory in D=6 dimensions. This theory, with 24 supercharges, reduces to the known N=6 supergravity after a toroidal compa...
Autores principales: | , , |
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Lenguaje: | eng |
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1997
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1016/S0370-2693(97)01508-6 http://cds.cern.ch/record/338057 |
_version_ | 1780891372829540352 |
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author | D'Auria, Riccardo Ferrara, Sergio Kounnas, Costas |
author_facet | D'Auria, Riccardo Ferrara, Sergio Kounnas, Costas |
author_sort | D'Auria, Riccardo |
collection | CERN |
description | Decomposition of the solvable Lie algebras of maximal supergravities in D=4, 5 and 6 indicates, at least at the geometrical level, the existence of an N=(4,2) chiral supergravity theory in D=6 dimensions. This theory, with 24 supercharges, reduces to the known N=6 supergravity after a toroidal compactification to D=5 and D=4. Evidence for this theory was given long ago by B. Julia. We show that this theory suffers from a gravitational anomaly equal to 4/7 of the pure N=(4,0) supergravity anomaly. However, unlike the latter, the absence of N=(4,2) matter to cancel the anomaly presumably makes this theory inconsistent. We discuss the obstruction in defining this theory in D=6, starting from an N=6 five-dimensional string model in the decompactification limit. The set of massless states necessary for the anomaly cancellation appears in this limit; as a result the N=(4,2) supergravity in D=6 is extended to N=(4,4) maximal supergravity theory. |
id | cern-338057 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 1997 |
record_format | invenio |
spelling | cern-3380572019-09-30T06:29:59Zdoi:10.1016/S0370-2693(97)01508-6http://cds.cern.ch/record/338057engD'Auria, RiccardoFerrara, SergioKounnas, CostasN=(4,2) Chiral Supergravity in Six Dimensions and Solvable Lie AlgebrasParticle Physics - TheoryDecomposition of the solvable Lie algebras of maximal supergravities in D=4, 5 and 6 indicates, at least at the geometrical level, the existence of an N=(4,2) chiral supergravity theory in D=6 dimensions. This theory, with 24 supercharges, reduces to the known N=6 supergravity after a toroidal compactification to D=5 and D=4. Evidence for this theory was given long ago by B. Julia. We show that this theory suffers from a gravitational anomaly equal to 4/7 of the pure N=(4,0) supergravity anomaly. However, unlike the latter, the absence of N=(4,2) matter to cancel the anomaly presumably makes this theory inconsistent. We discuss the obstruction in defining this theory in D=6, starting from an N=6 five-dimensional string model in the decompactification limit. The set of massless states necessary for the anomaly cancellation appears in this limit; as a result the N=(4,2) supergravity in D=6 is extended to N=(4,4) maximal supergravity theory.hep-th/9711048CERN-TH-97-303LPTENS-97-49UCLA-97-TEP-25CERN-TH-97-303LPT-ENS-97-49UCLA-97-TEP-25oai:cds.cern.ch:3380571997-11-10 |
spellingShingle | Particle Physics - Theory D'Auria, Riccardo Ferrara, Sergio Kounnas, Costas N=(4,2) Chiral Supergravity in Six Dimensions and Solvable Lie Algebras |
title | N=(4,2) Chiral Supergravity in Six Dimensions and Solvable Lie Algebras |
title_full | N=(4,2) Chiral Supergravity in Six Dimensions and Solvable Lie Algebras |
title_fullStr | N=(4,2) Chiral Supergravity in Six Dimensions and Solvable Lie Algebras |
title_full_unstemmed | N=(4,2) Chiral Supergravity in Six Dimensions and Solvable Lie Algebras |
title_short | N=(4,2) Chiral Supergravity in Six Dimensions and Solvable Lie Algebras |
title_sort | n=(4,2) chiral supergravity in six dimensions and solvable lie algebras |
topic | Particle Physics - Theory |
url | https://dx.doi.org/10.1016/S0370-2693(97)01508-6 http://cds.cern.ch/record/338057 |
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