Aleph-Null Extended Supergravity and Chern-Simons Theories
Hitoshi Nishino, S. J. Gates,
Abstract
We give generalizations of extended Poincaré supergravity with arbitrarily many supersymmetries in the absence of central charges in three-dimensions by gauging its intrinsic global ~SO(N)~ symmetry. We call these (Aleph-Null) supergravity theories. We further couple a non-Abelian supersymmetric Chern-Simons theory and an Abelian topological BF theory to supergravity. Our result overcomes the previous difficulty for supersymmetrization of Chern-Simons theories beyond ~N=4. This feature is peculiar to the Chern-Simons and BF theories including supergravity in three-dimensions. We also show that dimensional reduction schemes for four-dimensional theories such as ~N=1~ self-dual supersymmetric Yang-Mills theory or ~N=1~ supergravity theory that can generate globally and locally supersymmetric theories in three-dimensions. As an interesting application, we present supergravity Liouville theory in two-dimensions after appropriate dimensional reduction from three-dimensions.
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