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Pseudo-Supergravity Extension of the Bosonic String
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We construct a ``pseudo-supersymmetric" fermionic extension of the effective action of the bosonic string in arbitrary spacetime dimension D. The theory is invariant under pseudo-supersymmetry transformations up to the quadratic fermion order, which is sufficient in order to be able to derive Killing spinor equations in bosonic backgrounds, and hence to define BPS type solutions determined by a system of first-order equations. The pseudo-supersymmetric theory can be extended by coupling it to a Yang-Mills pseudo-supermultiplet. This also allows us to construct ``\alpha' corrections'' involving quadratic curvature terms. An exponential dilaton potential term, associated with the conformal anomaly for a bosonic string outside its critical dimension, can also be pseudo-supersymmetrised.
Forward citations
Cited by 2 Pith papers
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Instanton Moduli, Topology and the Bosonic/Heterotic String Origins
New BPS NS(-1)-branes in N=1, D=4 supergravity are supported by SU(2)xSU(2) instantons; the string-frame topology changes with instanton moduli while the 3-form charge stays fixed.
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New BPS States from Bosonic/Heterotic Duality
New heterotic BPS cosmic string and instanton solutions are constructed from a conjectured duality with the noncritical bosonic string, with explicit Killing spinors on both sides.
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