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Calculations for Mirror Symmetry with D-branes

We study normal functions capturing D-brane superpotentials on several one- and two-parameter Calabi-Yau hypersurfaces and complete intersections in weighted projective space. We calculate in the B-model and interpret the results using mirror symmetry in the large volume regime, albeit without ident...

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Autor principal: Walcher, Johannes
Lenguaje:eng
Publicado: 2009
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1126-6708/2009/09/129
http://cds.cern.ch/record/1175172
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author Walcher, Johannes
author_facet Walcher, Johannes
author_sort Walcher, Johannes
collection CERN
description We study normal functions capturing D-brane superpotentials on several one- and two-parameter Calabi-Yau hypersurfaces and complete intersections in weighted projective space. We calculate in the B-model and interpret the results using mirror symmetry in the large volume regime, albeit without identifying the precise A-model geometry in all cases. We identify new classes of extensions of Picard-Fuchs equations, as well as a novel type of topology changing phase transition involving quantum D-branes. A 4-d domain wall which is obtained in one region of closed string moduli space from wrapping a four-chain interpolating between two Lagrangian submanifolds is, for other values of the parameters, represented by a disk ending on a single Lagrangian.
id cern-1175172
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2009
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spelling cern-11751722023-03-14T20:30:58Zdoi:10.1088/1126-6708/2009/09/129http://cds.cern.ch/record/1175172engWalcher, JohannesCalculations for Mirror Symmetry with D-branesParticle Physics - TheoryWe study normal functions capturing D-brane superpotentials on several one- and two-parameter Calabi-Yau hypersurfaces and complete intersections in weighted projective space. We calculate in the B-model and interpret the results using mirror symmetry in the large volume regime, albeit without identifying the precise A-model geometry in all cases. We identify new classes of extensions of Picard-Fuchs equations, as well as a novel type of topology changing phase transition involving quantum D-branes. A 4-d domain wall which is obtained in one region of closed string moduli space from wrapping a four-chain interpolating between two Lagrangian submanifolds is, for other values of the parameters, represented by a disk ending on a single Lagrangian.We study normal functions capturing D-brane superpotentials on several one- and two-parameter Calabi-Yau hypersurfaces and complete intersections in weighted projective space. We calculate in the B-model and interpret the results using mirror symmetry in the large volume regime, albeit without identifying the precise A-model geometry in all cases. We identify new classes of extensions of Picard-Fuchs equations, as well as a novel type of topology changing phase transition involving quantum D-branes. A 4-d domain wall which is obtained in one region of closed string moduli space from wrapping a four-chain interpolating between two Lagrangian submanifolds is, for other values of the parameters, represented by a disk ending on a single Lagrangian.arXiv:0904.4905CERN-PH-TH-2009-056CERN-PH-TH-2009-056oai:cds.cern.ch:11751722009-05-01
spellingShingle Particle Physics - Theory
Walcher, Johannes
Calculations for Mirror Symmetry with D-branes
title Calculations for Mirror Symmetry with D-branes
title_full Calculations for Mirror Symmetry with D-branes
title_fullStr Calculations for Mirror Symmetry with D-branes
title_full_unstemmed Calculations for Mirror Symmetry with D-branes
title_short Calculations for Mirror Symmetry with D-branes
title_sort calculations for mirror symmetry with d-branes
topic Particle Physics - Theory
url https://dx.doi.org/10.1088/1126-6708/2009/09/129
http://cds.cern.ch/record/1175172
work_keys_str_mv AT walcherjohannes calculationsformirrorsymmetrywithdbranes