We study the open B-model representing D-branes on 2-cycles of local Calabi-Yau geometries. To this end we work out a reduction technique linking D-brane partition functions and multimatrix models in the case of conifold geometries so that the matrix potential is related to the complex moduli of the conifold. We study the geometric engineering of the multimatrix models and focus on two-matrix models with bilinear couplings. We show how to solve this models in an exact way, without resorting to the customary saddle point/large N approximation. The method consists of solving the quantum equations of motion and using the flow equations of the underlying integrable hierarchy to derive explicit expressions for correlators. Finally, we show how to incorporate in this formalism the description of several group of D-branes wrapped around different cycles.
Conifold geometries, topological strings and multi-matrix models / Bonelli, G.; Bonora, L.; Ricco, A.. - In: PHYSICAL REVIEW D, PARTICLES, FIELDS, GRAVITATION, AND COSMOLOGY. - ISSN 1550-7998. - 72:8(2005), pp. 1-20. [10.1103/PhysRevD.72.086001]
Conifold geometries, topological strings and multi-matrix models
Bonelli, G.;
2005-01-01
Abstract
We study the open B-model representing D-branes on 2-cycles of local Calabi-Yau geometries. To this end we work out a reduction technique linking D-brane partition functions and multimatrix models in the case of conifold geometries so that the matrix potential is related to the complex moduli of the conifold. We study the geometric engineering of the multimatrix models and focus on two-matrix models with bilinear couplings. We show how to solve this models in an exact way, without resorting to the customary saddle point/large N approximation. The method consists of solving the quantum equations of motion and using the flow equations of the underlying integrable hierarchy to derive explicit expressions for correlators. Finally, we show how to incorporate in this formalism the description of several group of D-branes wrapped around different cycles.File | Dimensione | Formato | |
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