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Number of generations in free fermionic string models

In string theory there seems to be an intimate connection between spacetime and world-sheet physics. Following this line of thought we investigate the family problem in a particular class of string solutions, namely the free fermionic string models. We find that the number of generations N_g is rela...

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Detalles Bibliográficos
Autores principales: Giannakis, Ioannis, Nanopoulos, Dimitri V., Yuan, Kajia
Lenguaje:eng
Publicado: 1995
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.52.1026
http://cds.cern.ch/record/277621
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author Giannakis, Ioannis
Nanopoulos, Dimitri V.
Yuan, Kajia
author_facet Giannakis, Ioannis
Nanopoulos, Dimitri V.
Yuan, Kajia
author_sort Giannakis, Ioannis
collection CERN
description In string theory there seems to be an intimate connection between spacetime and world-sheet physics. Following this line of thought we investigate the family problem in a particular class of string solutions, namely the free fermionic string models. We find that the number of generations N_g is related to the index of the supersymmetry generator of the underlying N=2 internal superconformal field theory which is always present in any N=1 spacetime supersymmetric string vacuum. We also derive a formula for the index and thus for the number of generations which is sensitive to the boundary condition assignments of the internal fermions and to certain coefficients which determine the weight with which each spin-structure of the model contributes to the one-loop partition function. Finally we apply our formula to several realistic string models in order to derive N_g and we verify our results by constructing explicitly the massless spectrum of these string models.
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spelling cern-2776212023-03-14T16:35:37Zdoi:10.1103/PhysRevD.52.1026http://cds.cern.ch/record/277621engGiannakis, IoannisNanopoulos, Dimitri V.Yuan, KajiaNumber of generations in free fermionic string modelsParticle Physics - TheoryIn string theory there seems to be an intimate connection between spacetime and world-sheet physics. Following this line of thought we investigate the family problem in a particular class of string solutions, namely the free fermionic string models. We find that the number of generations N_g is related to the index of the supersymmetry generator of the underlying N=2 internal superconformal field theory which is always present in any N=1 spacetime supersymmetric string vacuum. We also derive a formula for the index and thus for the number of generations which is sensitive to the boundary condition assignments of the internal fermions and to certain coefficients which determine the weight with which each spin-structure of the model contributes to the one-loop partition function. Finally we apply our formula to several realistic string models in order to derive N_g and we verify our results by constructing explicitly the massless spectrum of these string models.In string theory there seems to be an intimate connection between spacetime and world-sheet physics. Following this line of thought we investigate the family problem in a particular class of string solutions, namely the free fermionic string models. We find that the number of generations $N_g$ is related to the index of the supersymmetry generator of the underlying $N=2$ internal superconformal field theory which is always present in any $N=1$ spacetime supersymmetric string vacuum. We also derive a formula for the index and thus for the number of generations which is sensitive to the boundary condition assignments of the internal fermions and to certain coefficients which determine the weight with which each spin-structure of the model contributes to the one-loop partition function. Finally we apply our formula to several realistic string models in order to derive $N_g$ and we verify our results by constructing explicitly the massless spectrum of these string models.hep-th/9502153CERN-TH-7518-94ACERN-TH-7534-94CTP-TAMU-64-94ACT-19-94ACT-1994-19CERN-TH-7534-94CTP-TAMU-94-64oai:cds.cern.ch:2776211995-02-27
spellingShingle Particle Physics - Theory
Giannakis, Ioannis
Nanopoulos, Dimitri V.
Yuan, Kajia
Number of generations in free fermionic string models
title Number of generations in free fermionic string models
title_full Number of generations in free fermionic string models
title_fullStr Number of generations in free fermionic string models
title_full_unstemmed Number of generations in free fermionic string models
title_short Number of generations in free fermionic string models
title_sort number of generations in free fermionic string models
topic Particle Physics - Theory
url https://dx.doi.org/10.1103/PhysRevD.52.1026
http://cds.cern.ch/record/277621
work_keys_str_mv AT giannakisioannis numberofgenerationsinfreefermionicstringmodels
AT nanopoulosdimitriv numberofgenerationsinfreefermionicstringmodels
AT yuankajia numberofgenerationsinfreefermionicstringmodels