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Non-Perturbative Gravitational Corrections in a Class of N=2 String Duals

We investigate the non-perturbative equivalence of some heterotic/type II dual pairs with N=2 supersymmetry. The perturbative heterotic scalar manifolds are respectively SU(1, 1)/U(1) x SO(2, 2+NV)/ SO(2) x SO(2+NV) and SO(4, 4+NH)/ SO(4) x SO(4+NH) for moduli in the vector multiplets and hypermulti...

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Detalles Bibliográficos
Autores principales: Gregori, Andrea, Kounnas, Costas, Petropoulos, P.Marios
Lenguaje:eng
Publicado: 1998
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0550-3213(98)00698-1
http://cds.cern.ch/record/361780
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author Gregori, Andrea
Kounnas, Costas
Petropoulos, P.Marios
author_facet Gregori, Andrea
Kounnas, Costas
Petropoulos, P.Marios
author_sort Gregori, Andrea
collection CERN
description We investigate the non-perturbative equivalence of some heterotic/type II dual pairs with N=2 supersymmetry. The perturbative heterotic scalar manifolds are respectively SU(1, 1)/U(1) x SO(2, 2+NV)/ SO(2) x SO(2+NV) and SO(4, 4+NH)/ SO(4) x SO(4+NH) for moduli in the vector multiplets and hypermultiplets. The models under consideration correspond, on the type II side, to self-mirror Calabi-Yau threefolds with Hodge numbers h(1,1)= NV +3= h(2,1)= NH +3, which are K3 fibrations. We consider three classes of dual pairs, with NV=NH=8, 4 and 2. The models with h(1,1)=7 and 5 provide new constructions, while the h(1,1)=11, already studied in the literature, is reconsidered here. Perturbative R2-like corrections are computed on the heterotic side by using a universal operator whose amplitude has no singularities in the (T,U) space, and can therefore be compared with the type II side result. We point out several properties connecting K3 fibrations and spontaneous breaking of the N=4 supersymmetry to N=2. As a consequence of the reduced S- and T- duality symmetries, the instanton numbers in these three classes are restricted to integers, which are multiples of 2, 2 and 4, for NV=8, 4 and 2, respectively.
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spelling cern-3617802023-03-14T18:20:38Zdoi:10.1016/S0550-3213(98)00698-1http://cds.cern.ch/record/361780engGregori, AndreaKounnas, CostasPetropoulos, P.MariosNon-Perturbative Gravitational Corrections in a Class of N=2 String DualsParticle Physics - TheoryWe investigate the non-perturbative equivalence of some heterotic/type II dual pairs with N=2 supersymmetry. The perturbative heterotic scalar manifolds are respectively SU(1, 1)/U(1) x SO(2, 2+NV)/ SO(2) x SO(2+NV) and SO(4, 4+NH)/ SO(4) x SO(4+NH) for moduli in the vector multiplets and hypermultiplets. The models under consideration correspond, on the type II side, to self-mirror Calabi-Yau threefolds with Hodge numbers h(1,1)= NV +3= h(2,1)= NH +3, which are K3 fibrations. We consider three classes of dual pairs, with NV=NH=8, 4 and 2. The models with h(1,1)=7 and 5 provide new constructions, while the h(1,1)=11, already studied in the literature, is reconsidered here. Perturbative R2-like corrections are computed on the heterotic side by using a universal operator whose amplitude has no singularities in the (T,U) space, and can therefore be compared with the type II side result. We point out several properties connecting K3 fibrations and spontaneous breaking of the N=4 supersymmetry to N=2. As a consequence of the reduced S- and T- duality symmetries, the instanton numbers in these three classes are restricted to integers, which are multiples of 2, 2 and 4, for NV=8, 4 and 2, respectively.We investigate the non-perturbative equivalence of some heterotic/type II dual pairs with N = 2 supersymmetry. The perturbative heterotic scalar manifolds are respectively SU (1, 1)/ U (1) × SO (2,2+ N V )/ SO (2) × SO (2+ N V ) and SO (4,4+ N H )/ SO (4) × SO (4+ N H ) for moduli in the vector multiplets and hypermultiplets. The models under consideration correspond, on the type II side, to self-mirror Calabi-Yau threefolds with Hodge numbers h 1,1 = N V + 3 = h 2,1 = N H + 3, which are K 3 fibrations. We consider three classes of dual pairs, with N V = N H = 8, 4 and 2. The models with h 1,1 = 7 and 5 provide new constructions, while the h 1,1 = 11, already studied in the literature, is reconsidered here. Perturbative R 2 -like corrections are computed on the heterotic side by using a universal operator whose amplitude has no singularities in the ( T , U ) space, and can therefore be compared with the type II side result. We point out several properties connecting K 3 fibrations and spontaneous breaking of the N = 4 supersymmetry to N = 2. As a consequence of the reduced S - and T - duality symmetries, the instanton numbers in these three classes are restricted to integers, which are multiples of 2, 2 and 4, for N V = 8, 4 and 2, respectively.We investigate the non-perturbative equivalence of some heterotic/type II dual pairs with N=2 supersymmetry. The perturbative heterotic scalar manifolds are respectively SU(1, 1)/U(1) x SO(2, 2+NV)/ SO(2) x SO(2+NV) and SO(4, 4+NH)/ SO(4) x SO(4+NH) for moduli in the vector multiplets and hypermultiplets. The models under consideration correspond, on the type II side, to self-mirror Calabi-Yau threefolds with Hodge numbers h(1,1)= NV +3= h(2,1)= NH +3, which are K3 fibrations. We consider three classes of dual pairs, with NV=NH=8, 4 and 2. The models with h(1,1)=7 and 5 provide new constructions, while the h(1,1)=11, already studied in the literature, is reconsidered here. Perturbative R2-like corrections are computed on the heterotic side by using a universal operator whose amplitude has no singularities in the (T,U) space, and can therefore be compared with the type II side result. We point out several properties connecting K3 fibrations and spontaneous breaking of the N=4 supersymmetry to N=2. As a consequence of the reduced S- and T- duality symmetries, the instanton numbers in these three classes are restricted to integers, which are multiples of 2, 2 and 4, for NV=8, 4 and 2, respectively.hep-th/9808024CERN-TH-98-195CPTH-S609-0498LPTENS-98-15CPTH-S609.0498CERN-TH-98-195CPTH-S-609LPT-ENS-98-15oai:cds.cern.ch:3617801998-08-06
spellingShingle Particle Physics - Theory
Gregori, Andrea
Kounnas, Costas
Petropoulos, P.Marios
Non-Perturbative Gravitational Corrections in a Class of N=2 String Duals
title Non-Perturbative Gravitational Corrections in a Class of N=2 String Duals
title_full Non-Perturbative Gravitational Corrections in a Class of N=2 String Duals
title_fullStr Non-Perturbative Gravitational Corrections in a Class of N=2 String Duals
title_full_unstemmed Non-Perturbative Gravitational Corrections in a Class of N=2 String Duals
title_short Non-Perturbative Gravitational Corrections in a Class of N=2 String Duals
title_sort non-perturbative gravitational corrections in a class of n=2 string duals
topic Particle Physics - Theory
url https://dx.doi.org/10.1016/S0550-3213(98)00698-1
http://cds.cern.ch/record/361780
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