Cargando…

Phases of Supersymmetric D-branes on Kaehler Manifolds and the McKay correspondence

We study the topological zero mode sector of type II strings on a K\"ahler manifold $X$ in the presence of boundaries. We construct two finite bases, in a sense bosonic and fermionic, that generate the the topological sector of the Hilbert space with boundaries. The fermionic basis localizes on...

Descripción completa

Detalles Bibliográficos
Autor principal: Mayr, P.
Lenguaje:eng
Publicado: 2000
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1126-6708/2001/01/018
http://cds.cern.ch/record/472520
_version_ 1780896602978779136
author Mayr, P.
author_facet Mayr, P.
author_sort Mayr, P.
collection CERN
description We study the topological zero mode sector of type II strings on a K\"ahler manifold $X$ in the presence of boundaries. We construct two finite bases, in a sense bosonic and fermionic, that generate the the topological sector of the Hilbert space with boundaries. The fermionic basis localizes on compact submanifolds in $X$. A variation of the FI terms interpolates between the description of these ground states in terms of the ring of chiral fields at the boundary at small volume and helices of exceptional bundles at large volume, respectively. The identification of the bosonic/fermionic basis with the dual bases for the non-compact/compact K-theory group on $X$ gives a natural explanation of the McKay correspondence in terms of a linear sigma model and suggests a simple generalization of McKay to singular resolutions. The construction provides also a very effective way to describe D-brane states on generic, compact Calabi--Yau manifolds and allows to recover detailed information on the moduli space, such as monodromies and analytic continuation matrices, from the group theoretical data of a simple orbifold.
id cern-472520
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2000
record_format invenio
spelling cern-4725202023-03-14T17:03:29Zdoi:10.1088/1126-6708/2001/01/018http://cds.cern.ch/record/472520engMayr, P.Phases of Supersymmetric D-branes on Kaehler Manifolds and the McKay correspondenceParticle Physics - TheoryWe study the topological zero mode sector of type II strings on a K\"ahler manifold $X$ in the presence of boundaries. We construct two finite bases, in a sense bosonic and fermionic, that generate the the topological sector of the Hilbert space with boundaries. The fermionic basis localizes on compact submanifolds in $X$. A variation of the FI terms interpolates between the description of these ground states in terms of the ring of chiral fields at the boundary at small volume and helices of exceptional bundles at large volume, respectively. The identification of the bosonic/fermionic basis with the dual bases for the non-compact/compact K-theory group on $X$ gives a natural explanation of the McKay correspondence in terms of a linear sigma model and suggests a simple generalization of McKay to singular resolutions. The construction provides also a very effective way to describe D-brane states on generic, compact Calabi--Yau manifolds and allows to recover detailed information on the moduli space, such as monodromies and analytic continuation matrices, from the group theoretical data of a simple orbifold.We study the topological zero mode sector of type II strings on a K\"ahler manifold $X$ in the presence of boundaries. We construct two finite bases, in a sense bosonic and fermionic, that generate the topological sector of the Hilbert space with boundaries. The fermionic basis localizes on compact submanifolds in $X$. A variation of the FI terms interpolates between the description of these ground states in terms of the ring of chiral fields at the boundary at small volume and helices of exceptional sheaves at large volume, respectively. The identification of the bosonic/fermionic basis with the dual bases for the non-compact/compact K-theory group on $X$ gives a natural explanation of the McKay correspondence in terms of a linear sigma model and suggests a simple generalization of McKay to singular resolutions. The construction provides also a very effective way to describe D-brane states on generic, compact Calabi--Yau manifolds and allows to recover detailed information on the moduli space, such as monodromies and analytic continuation matrices, from the group theoretical data of a simple orbifold.hep-th/0010223CERN-TH-2000-315CERN-TH-2000-315oai:cds.cern.ch:4725202000-10-25
spellingShingle Particle Physics - Theory
Mayr, P.
Phases of Supersymmetric D-branes on Kaehler Manifolds and the McKay correspondence
title Phases of Supersymmetric D-branes on Kaehler Manifolds and the McKay correspondence
title_full Phases of Supersymmetric D-branes on Kaehler Manifolds and the McKay correspondence
title_fullStr Phases of Supersymmetric D-branes on Kaehler Manifolds and the McKay correspondence
title_full_unstemmed Phases of Supersymmetric D-branes on Kaehler Manifolds and the McKay correspondence
title_short Phases of Supersymmetric D-branes on Kaehler Manifolds and the McKay correspondence
title_sort phases of supersymmetric d-branes on kaehler manifolds and the mckay correspondence
topic Particle Physics - Theory
url https://dx.doi.org/10.1088/1126-6708/2001/01/018
http://cds.cern.ch/record/472520
work_keys_str_mv AT mayrp phasesofsupersymmetricdbranesonkaehlermanifoldsandthemckaycorrespondence