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Master Space, Hilbert Series and Seiberg Duality

We analyze the action of Toric (Seiberg) duality on the combined mesonic and baryonic moduli space of quiver gauge theories obtained from D3 branes at Calabi-Yau singularities. We analyze in particular the structure of the master space, the complete moduli space for one brane, for different toric ph...

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Detalles Bibliográficos
Autores principales: Forcella, Davide, Hanany, Amihay, Zaffaroni, Alberto
Lenguaje:eng
Publicado: 2008
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1126-6708/2009/07/018
http://cds.cern.ch/record/1136377
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author Forcella, Davide
Hanany, Amihay
Zaffaroni, Alberto
author_facet Forcella, Davide
Hanany, Amihay
Zaffaroni, Alberto
author_sort Forcella, Davide
collection CERN
description We analyze the action of Toric (Seiberg) duality on the combined mesonic and baryonic moduli space of quiver gauge theories obtained from D3 branes at Calabi-Yau singularities. We analyze in particular the structure of the master space, the complete moduli space for one brane, for different toric phases of a given singularity. We show that the Hilbert Series for the largest component of the master space of different phases is the same, when refined with all the non anomalous charges. This reflects the fact that the quiver gauge theories associated with different phases are related by Seiberg duality when the number of branes is greater than one.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2008
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spelling cern-11363772023-03-12T04:53:36Zdoi:10.1088/1126-6708/2009/07/018http://cds.cern.ch/record/1136377engForcella, DavideHanany, AmihayZaffaroni, AlbertoMaster Space, Hilbert Series and Seiberg DualityParticle Physics - TheoryWe analyze the action of Toric (Seiberg) duality on the combined mesonic and baryonic moduli space of quiver gauge theories obtained from D3 branes at Calabi-Yau singularities. We analyze in particular the structure of the master space, the complete moduli space for one brane, for different toric phases of a given singularity. We show that the Hilbert Series for the largest component of the master space of different phases is the same, when refined with all the non anomalous charges. This reflects the fact that the quiver gauge theories associated with different phases are related by Seiberg duality when the number of branes is greater than one.We analyze the action of Toric (Seiberg) duality on the combined mesonic and baryonic moduli space of quiver gauge theories obtained from D3 branes at Calabi-Yau singularities. We analyze in particular the structure of the master space, the complete moduli space for one brane, for different toric phases of a given singularity. We show that the Hilbert Series for the largest component of the master space of different phases is the same, when refined with all the non anomalous charges. This reflects the fact that the quiver gauge theories associated with different phases are related by Seiberg duality when the number of branes is greater than one.arXiv:0810.4519BICOCCA-FT-08-16CERN-PH-TH-2008-200IMPERIAL-TP-08-AH-09BICOCCA-FT-08-16CERN-PH-TH-2008-200IMPERIAL-TP-08-AH-09oai:cds.cern.ch:11363772008-10-27
spellingShingle Particle Physics - Theory
Forcella, Davide
Hanany, Amihay
Zaffaroni, Alberto
Master Space, Hilbert Series and Seiberg Duality
title Master Space, Hilbert Series and Seiberg Duality
title_full Master Space, Hilbert Series and Seiberg Duality
title_fullStr Master Space, Hilbert Series and Seiberg Duality
title_full_unstemmed Master Space, Hilbert Series and Seiberg Duality
title_short Master Space, Hilbert Series and Seiberg Duality
title_sort master space, hilbert series and seiberg duality
topic Particle Physics - Theory
url https://dx.doi.org/10.1088/1126-6708/2009/07/018
http://cds.cern.ch/record/1136377
work_keys_str_mv AT forcelladavide masterspacehilbertseriesandseibergduality
AT hananyamihay masterspacehilbertseriesandseibergduality
AT zaffaronialberto masterspacehilbertseriesandseibergduality