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The strength of non-perturbative effects in matrix models and string effective lagrangians

We present a summary of the results of an explicit calculation of the strength of non-perturbative interactions in matrix models and string effective Lagrangians. These interactions are induced by single eigenvalue instantons in the d=1 bosonic matrix model. A well defined approximation scheme is us...

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Detalles Bibliográficos
Autores principales: Brustein, Ram, Faux, Michael, Ovrut, Burt A.
Lenguaje:eng
Publicado: 1994
Materias:
Acceso en línea:http://cds.cern.ch/record/266079
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author Brustein, Ram
Faux, Michael
Ovrut, Burt A.
author_facet Brustein, Ram
Faux, Michael
Ovrut, Burt A.
author_sort Brustein, Ram
collection CERN
description We present a summary of the results of an explicit calculation of the strength of non-perturbative interactions in matrix models and string effective Lagrangians. These interactions are induced by single eigenvalue instantons in the d=1 bosonic matrix model. A well defined approximation scheme is used to obtain induced operators whose exact form we exhibit. We briefly discuss the possibility that similar instantons in a supersymmetric version of the theory may break supersymmetry dynamically.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1994
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spelling cern-2660792023-03-14T20:44:20Zhttp://cds.cern.ch/record/266079engBrustein, RamFaux, MichaelOvrut, Burt A.The strength of non-perturbative effects in matrix models and string effective lagrangiansParticle Physics - TheoryGeneral Theoretical PhysicsWe present a summary of the results of an explicit calculation of the strength of non-perturbative interactions in matrix models and string effective Lagrangians. These interactions are induced by single eigenvalue instantons in the d=1 bosonic matrix model. A well defined approximation scheme is used to obtain induced operators whose exact form we exhibit. We briefly discuss the possibility that similar instantons in a supersymmetric version of the theory may break supersymmetry dynamically.We present a summary of the results of an explicit calculation of the strength of non-perturbative interactions in matrix models and string effective Lagrangians. These interactions are induced by single eigenvalue instantons in the $d=1$ bosonic matrix model. A well defined approximation scheme is used to obtain induced operators whose exact form we exhibit. We briefly discuss the possibility that similar instantons in a supersymmetric version of the theory may break supersymmetry dynamically.hep-th/9407063CERN-TH-7356-94UPR-620-TCERN-TH-7356-94UPR-620-Toai:cds.cern.ch:2660791994-07-13
spellingShingle Particle Physics - Theory
General Theoretical Physics
Brustein, Ram
Faux, Michael
Ovrut, Burt A.
The strength of non-perturbative effects in matrix models and string effective lagrangians
title The strength of non-perturbative effects in matrix models and string effective lagrangians
title_full The strength of non-perturbative effects in matrix models and string effective lagrangians
title_fullStr The strength of non-perturbative effects in matrix models and string effective lagrangians
title_full_unstemmed The strength of non-perturbative effects in matrix models and string effective lagrangians
title_short The strength of non-perturbative effects in matrix models and string effective lagrangians
title_sort strength of non-perturbative effects in matrix models and string effective lagrangians
topic Particle Physics - Theory
General Theoretical Physics
url http://cds.cern.ch/record/266079
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