1985
DOI: 10.1016/0550-3213(85)90488-2
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Vector multiplets coupled to N=2 supergravity: Super-Higgs effect, flat potentials and geometric structure

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Cited by 280 publications
(377 citation statements)
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“…Using for example the identities found in [34], one may check that (2.13) is consistent with the general form of the scalar potential induced by Fayet-Iliopoulos terms in four dimensions [35,36],…”
Section: Jhep05(2008)045mentioning
confidence: 99%
“…Using for example the identities found in [34], one may check that (2.13) is consistent with the general form of the scalar potential induced by Fayet-Iliopoulos terms in four dimensions [35,36],…”
Section: Jhep05(2008)045mentioning
confidence: 99%
“…In Appendix B we discuss in detail the construction of the generators of this SU(2) symmetry. By looking at the SU(2) charge of the scalars, we identify the ones belonging to the vector multiplets and the ones belonging to the hypermultiplets: the scalars of a hypermultiplet do transform under the SU(2) symmetry of N = 2 [20]. In particular, it is easy to see that the pair dilaton-pseudoscalar is charged and therefore belongs to a hypermultiplet.…”
Section: (24)mentioning
confidence: 99%
“…Let us brie y recall the basic elements of special geometry, as derived from N=2 supergravity in D=4 dimensions [34]; [35]; [20] . In the next section we will recall its connection to C-Y manifolds and deformation theory.…”
Section: Special Geometry and E Ective Actionsmentioning
confidence: 99%
“…Eq. III-13 has been written in the \special coordinates" [35]; [19] i = X A =X 0 (A = 1 : : : h). These are actually the coordinates in which N=2 supergravity was rst formulated [34] .…”
Section: Special Geometry and E Ective Actionsmentioning
confidence: 99%
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