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Broken sigma-model isometries in very special geometry

Bernard de Wit, Antoine Van Proeyen

Abstract

We show that the isometries of the manifold of scalars in $N=2$ supergravity in $d=5$ space-time dimensions can be broken by the supergravity interactions. The opposite conclusion holds for the dimensionally reduced $d=4$ theories, where the isometries of the scalar manifold are always symmetries of the full theory. These spaces, which form a subclass of the {\em special} Kähler manifolds, are relevant for superstring compactifications.

Broken sigma-model isometries in very special geometry

Abstract

We show that the isometries of the manifold of scalars in supergravity in space-time dimensions can be broken by the supergravity interactions. The opposite conclusion holds for the dimensionally reduced theories, where the isometries of the scalar manifold are always symmetries of the full theory. These spaces, which form a subclass of the {\em special} Kähler manifolds, are relevant for superstring compactifications.

Paper Structure

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