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The topological B model as a twisted spinning particle

The B-twisted topological sigma model coupled to topological gravity is supposed to be described by an ordinary field theory: a type of holomorphic Chern-Simons theory for the open string, and the Kodaira-Spencer theory for the closed string. We show that the B model can be represented as a PARTICLE...

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Detalles Bibliográficos
Autores principales: Marcus, N, Yankielowicz, Shimon
Lenguaje:eng
Publicado: 1994
Materias:
Acceso en línea:https://dx.doi.org/10.1016/0550-3213(94)90601-7
http://cds.cern.ch/record/267395
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author Marcus, N
Yankielowicz, Shimon
author_facet Marcus, N
Yankielowicz, Shimon
author_sort Marcus, N
collection CERN
description The B-twisted topological sigma model coupled to topological gravity is supposed to be described by an ordinary field theory: a type of holomorphic Chern-Simons theory for the open string, and the Kodaira-Spencer theory for the closed string. We show that the B model can be represented as a PARTICLE theory, obtained by reducing the sigma model to one dimension, and replacing the coupling to topological gravity by a coupling to a twisted one-dimensional supergravity. The particle can be defined on ANY Kahler manifold--it does not require the Calabi-Yau condition--so it may provide a more generalized setting for the B model than the topological sigma model. The one-loop partition function of the particle can be written in terms of the Ray-Singer torsion of the manifold, and agrees with that of the original B model. After showing how to deform the Kahler and complex structures in the particle, we prove the independence of this partition function on the Kahler structure, and investigate the origin of the holomorphic anomaly. To define other amplitudes, one needs to introduce interactions into the particle. The particle will then define a field theory, which may or may not be the Chern-Simons or Kodaira-Spencer theories.
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spelling cern-2673952019-09-30T06:29:59Zdoi:10.1016/0550-3213(94)90601-7http://cds.cern.ch/record/267395engMarcus, NYankielowicz, ShimonThe topological B model as a twisted spinning particleParticle Physics - TheoryThe B-twisted topological sigma model coupled to topological gravity is supposed to be described by an ordinary field theory: a type of holomorphic Chern-Simons theory for the open string, and the Kodaira-Spencer theory for the closed string. We show that the B model can be represented as a PARTICLE theory, obtained by reducing the sigma model to one dimension, and replacing the coupling to topological gravity by a coupling to a twisted one-dimensional supergravity. The particle can be defined on ANY Kahler manifold--it does not require the Calabi-Yau condition--so it may provide a more generalized setting for the B model than the topological sigma model. The one-loop partition function of the particle can be written in terms of the Ray-Singer torsion of the manifold, and agrees with that of the original B model. After showing how to deform the Kahler and complex structures in the particle, we prove the independence of this partition function on the Kahler structure, and investigate the origin of the holomorphic anomaly. To define other amplitudes, one needs to introduce interactions into the particle. The particle will then define a field theory, which may or may not be the Chern-Simons or Kodaira-Spencer theories.hep-th/9408116CERN-TH-7402-94TAUP-2192oai:cds.cern.ch:2673951994-08-21
spellingShingle Particle Physics - Theory
Marcus, N
Yankielowicz, Shimon
The topological B model as a twisted spinning particle
title The topological B model as a twisted spinning particle
title_full The topological B model as a twisted spinning particle
title_fullStr The topological B model as a twisted spinning particle
title_full_unstemmed The topological B model as a twisted spinning particle
title_short The topological B model as a twisted spinning particle
title_sort topological b model as a twisted spinning particle
topic Particle Physics - Theory
url https://dx.doi.org/10.1016/0550-3213(94)90601-7
http://cds.cern.ch/record/267395
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