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Borel and Stokes Nonperturbative Phenomena in Topological String Theory and c=1 Matrix Models
We address the nonperturbative structure of topological strings and c=1 matrix models, focusing on understanding the nature of instanton effects alongside with exploring their relation to the large-order behavior of the 1/N expansion. We consider the Gaussian, Penner and Chern-Simons matrix models,...
Autores principales: | , |
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Lenguaje: | eng |
Publicado: |
2009
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1007/s00023-010-0044-5 http://cds.cern.ch/record/1192977 |
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author | Pasquetti, Sara Schiappa, Ricardo |
author_facet | Pasquetti, Sara Schiappa, Ricardo |
author_sort | Pasquetti, Sara |
collection | CERN |
description | We address the nonperturbative structure of topological strings and c=1 matrix models, focusing on understanding the nature of instanton effects alongside with exploring their relation to the large-order behavior of the 1/N expansion. We consider the Gaussian, Penner and Chern-Simons matrix models, together with their holographic duals, the c=1 minimal string at self-dual radius and topological string theory on the resolved conifold. We employ Borel analysis to obtain the exact all-loop multi-instanton corrections to the free energies of the aforementioned models, and show that the leading poles in the Borel plane control the large-order behavior of perturbation theory. We understand the nonperturbative effects in terms of the Schwinger effect and provide a semiclassical picture in terms of eigenvalue tunneling between critical points of the multi-sheeted matrix model effective potentials. In particular, we relate instantons to Stokes phenomena via a hyperasymptotic analysis, providing a smoothing of the nonperturbative ambiguity. Our predictions for the multi-instanton expansions are confirmed within the trans-series set-up, which in the double-scaling limit describes nonperturbative corrections to the Toda equation. Finally, we provide a spacetime realization of our nonperturbative corrections in terms of toric D-brane instantons which, in the double-scaling limit, precisely match D-instanton contributions to c=1 minimal stri ngs. |
id | cern-1192977 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2009 |
record_format | invenio |
spelling | cern-11929772021-09-17T02:52:21Zdoi:10.1007/s00023-010-0044-5http://cds.cern.ch/record/1192977engPasquetti, SaraSchiappa, RicardoBorel and Stokes Nonperturbative Phenomena in Topological String Theory and c=1 Matrix ModelsParticle Physics - TheoryWe address the nonperturbative structure of topological strings and c=1 matrix models, focusing on understanding the nature of instanton effects alongside with exploring their relation to the large-order behavior of the 1/N expansion. We consider the Gaussian, Penner and Chern-Simons matrix models, together with their holographic duals, the c=1 minimal string at self-dual radius and topological string theory on the resolved conifold. We employ Borel analysis to obtain the exact all-loop multi-instanton corrections to the free energies of the aforementioned models, and show that the leading poles in the Borel plane control the large-order behavior of perturbation theory. We understand the nonperturbative effects in terms of the Schwinger effect and provide a semiclassical picture in terms of eigenvalue tunneling between critical points of the multi-sheeted matrix model effective potentials. In particular, we relate instantons to Stokes phenomena via a hyperasymptotic analysis, providing a smoothing of the nonperturbative ambiguity. Our predictions for the multi-instanton expansions are confirmed within the trans-series set-up, which in the double-scaling limit describes nonperturbative corrections to the Toda equation. Finally, we provide a spacetime realization of our nonperturbative corrections in terms of toric D-brane instantons which, in the double-scaling limit, precisely match D-instanton contributions to c=1 minimal stri ngs.We address the nonperturbative structure of topological strings and c=1 matrix models, focusing on understanding the nature of instanton effects alongside with exploring their relation to the large-order behavior of the 1/N expansion. We consider the Gaussian, Penner and Chern-Simons matrix models, together with their holographic duals, the c=1 minimal string at self-dual radius and topological string theory on the resolved conifold. We employ Borel analysis to obtain the exact all-loop multi-instanton corrections to the free energies of the aforementioned models, and show that the leading poles in the Borel plane control the large-order behavior of perturbation theory. We understand the nonperturbative effects in terms of the Schwinger effect and provide a semiclassical picture in terms of eigenvalue tunneling between critical points of the multi-sheeted matrix model effective potentials. In particular, we relate instantons to Stokes phenomena via a hyperasymptotic analysis, providing a smoothing of the nonperturbative ambiguity. Our predictions for the multi-instanton expansions are confirmed within the trans-series set-up, which in the double-scaling limit describes nonperturbative corrections to the Toda equation. Finally, we provide a spacetime realization of our nonperturbative corrections in terms of toric D-brane instantons which, in the double-scaling limit, precisely match D-instanton contributions to c=1 minimal stringsarXiv:0907.4082CERN-PH-TH-2009-130CERN-PH-TH-2009-130oai:cds.cern.ch:11929772009-07-24 |
spellingShingle | Particle Physics - Theory Pasquetti, Sara Schiappa, Ricardo Borel and Stokes Nonperturbative Phenomena in Topological String Theory and c=1 Matrix Models |
title | Borel and Stokes Nonperturbative Phenomena in Topological String Theory and c=1 Matrix Models |
title_full | Borel and Stokes Nonperturbative Phenomena in Topological String Theory and c=1 Matrix Models |
title_fullStr | Borel and Stokes Nonperturbative Phenomena in Topological String Theory and c=1 Matrix Models |
title_full_unstemmed | Borel and Stokes Nonperturbative Phenomena in Topological String Theory and c=1 Matrix Models |
title_short | Borel and Stokes Nonperturbative Phenomena in Topological String Theory and c=1 Matrix Models |
title_sort | borel and stokes nonperturbative phenomena in topological string theory and c=1 matrix models |
topic | Particle Physics - Theory |
url | https://dx.doi.org/10.1007/s00023-010-0044-5 http://cds.cern.ch/record/1192977 |
work_keys_str_mv | AT pasquettisara borelandstokesnonperturbativephenomenaintopologicalstringtheoryandc1matrixmodels AT schiapparicardo borelandstokesnonperturbativephenomenaintopologicalstringtheoryandc1matrixmodels |