Gauged supergravities and their symmetry-breaking vacua in F-theory
A bstract We first derive a class of six-dimensional (1, 0) gauged supergravities arising from threefold compactifications of F-theory with background fluxes. The derivation proceeds via the M-theory dual reduction on an SU(3)-structure manifold with four-form G 4 -flux. We then show that vacuum sol...
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Veröffentlicht in: | The journal of high energy physics 2013-06, Vol.2013 (6), p.1-37, Article 12 |
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Sprache: | eng |
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bstract
We first derive a class of six-dimensional (1, 0) gauged supergravities arising from threefold compactifications of F-theory with background fluxes. The derivation proceeds via the M-theory dual reduction on an SU(3)-structure manifold with four-form
G
4
-flux. We then show that vacuum solutions of these six-dimensional theories describes four-dimensional flat space times a compact two-dimensional internal space with additional localized sources. This induces a spontaneous compactification to four space-time dimensions and breaks the supersymmetry from
= 2 to
= 1, which allows the reduced theory to have a four-dimensional chiral spectrum. We perform the reduction explicitly and derive the
= 1 characteristic data of the four-dimensional effective theory. The match with fourfold reductions of F-theory is discussed and many of the characteristic features are compared. We comment, in particular, on warping effects and one-loop Chern-Simons terms generically present in four-dimensional F-theory reductions. |
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ISSN: | 1029-8479 1029-8479 |
DOI: | 10.1007/JHEP06(2013)012 |