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      Wilson Loops in Noncommutative Yang Mills

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          Abstract

          We study the correlation functions of the Wilson loops in noncommutative Yang-Mills theory based upon its equivalence to twisted reduced models. We point out that there is a crossover at the noncommutativity scale. At large momentum scale, the Wilson loops in noncommmutative Yang-Mills represent extended objects. They coincide with those in ordinary Yang-Mills theory in low energy limit. The correlation functions on D-branes in IIB matrix model exhibit the identical crossover behavior. It is observed to be consistent with the supergravity description with running string coupling. We also explain that the results of Seiberg and Witten can be simply understood in our formalism.

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          Dirichlet-Branes and Ramond-Ramond Charges

          We show that Dirichlet-branes, extended objects defined by mixed Dirichlet-Neumann boundary conditions in string theory, break half of the supersymmetries of the type~II superstring and carry a complete set of electric and magnetic Ramond-Ramond charges. We also find that the product of the electric and magnetic charges is a single Dirac unit, and that the quantum of charge takes the value required by string duality. This is strong evidence that the Dirchlet-branes are intrinsic to type II string theory and are the Ramond-Ramond sources required by string duality. We also note the existence of a previously overlooked 9-form potential in the IIa string, which gives rise to an effective cosmological constant of undetermined magnitude.
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            Twisted-Eguchi-Kawai model: A reduced model for large-Nlattice gauge theory

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              Author and article information

              Journal
              01 October 1999
              1999-10-06
              Article
              10.1016/S0550-3213(99)00708-7
              hep-th/9910004
              e2c0db9a-5928-47e1-8aae-8ac03e4e8402
              History
              Custom metadata
              Nucl.Phys. B573 (2000) 573-593
              25 pages, no figures, references added and typos corrected
              hep-th

              High energy & Particle physics
              High energy & Particle physics

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