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Non-perturbative effects and wall-crossing from topological strings

Andrés Collinucci et al JHEP11(2009)025   doi: 10.1088/1126-6708/2009/11/025  Help

Open Access This is an Open Access article.

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Andrés Collinuccia, Pablo Solerb and Angel M. Urangab,c
a Institute for Theoretical Physics, Vienna University of Technology, Wiedner Hauptstr. 8-10, 1040 Vienna, Austria
b Instituto de Física Teórica UAM/CSIC, Universidad Autónoma de Madrid C-XVI, Cantoblanco, 28049 Madrid, Spain
c PH-TH Division, CERN, CH-1211 Geneva 23, Switzerland
E-mail: collinucci.phys@gmail.com, pablo.soler@uam.es and angel.uranga@uam.es

Abstract. We argue that the Gopakumar-Vafa interpretation of the topological string partition function can be used to compute and resum certain non-perturbative brane instanton effects of type II CY compactifications. In particular the topological string A-model encodes the non-perturbative corrections to the hypermultiplet moduli space metric from general D1/D(-1)-brane instantons in 4d Script N = 2 IIB models. We also discuss the reduction to 4d Script N = 1 by fluxes and/or orientifolds and/or D-branes, and the prospects to resum brane instanton contributions to non-perturbative superpotentials. We argue that the connection between non-perturbative effects and the topological string underlies the continuity of non-perturbative effects across lines of BPS stability. We also confirm this statement in mirror B-model matrix model examples, relating matrix model instantons to non-perturbative D-brane instantons. The computation of non-perturbative effects from the topological string requires a 3d circle compactification and T-duality, relating effects from particles and instantons, reminiscent of that involved in the physical derivation of the Kontsevich-Soibelmann wall-crossing formula.

Key words: Nonperturbative Effects; Topological Strings; D-branes; Superstring Vacua

E-print number: 0904.1133
Cited: by
Refers: to

Received 21 April 2009, accepted for publication 11 October 2009
Published 6 November 2009

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