Partial Breaking in Rigid Limit of $\mathcal{N}=2$ Gauged Supergravity
Abstract
Using a new manner to rescale fields in gauged supergravity with n vector multiplets and n hypermultiplets, we develop the explicit derivation of the rigid limit of quaternionic isometry Ward identities agreeing with known results. We show that the rigid limit can be achieved, amongst others, by performing two successive transformations on the covariantly holomorphic sections of the special Kahler manifold: a particular symplectic change followed by a particular Kahler transformation. We also give a geometric interpretation of the parameters used in arXiv:1508.01474 to deal with the expansion of the holomorphic prepotential of the theory. We give as well a D- brane realisation of gauged quaternionic isometries and an interpretation of the embedding tensor in terms of type IIA/IIB mirror symmetry. Moreover, we construct explicit metrics for a new family of - dimensional quaternionic manifolds classified by ADE Lie algebras generalising the geometry which corresponds to . The conditions of the partial breaking of supersymmetry in the rigid limit are also derived for both the observable and the hidden sectors. Other features are also studied.
Keywords
Cite
@article{arxiv.1704.05686,
title = {Partial Breaking in Rigid Limit of $\mathcal{N}=2$ Gauged Supergravity},
author = {R. Ahl Laamara and E. H Saidi and M. Vall},
journal= {arXiv preprint arXiv:1704.05686},
year = {2019}
}
Comments
LaTeX, 89 pages