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String theory and noncommutative geometry

Nathan Seiberg et al JHEP09(1999)032   doi: 10.1088/1126-6708/1999/09/032  Help

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Nathan Seiberg1 and Edward Witten1
1 School of Natural Sciences, Institute for Advanced Study, Olden Lane, Princeton, NJ 08540, USA
E-mail: seiberg@ias.edu

Abstract. We extend earlier ideas about the appearance of noncommutative geometry in string theory with a nonzero B-field. We identify a limit in which the entire string dynamics is described by a minimally coupled (supersymmetric) gauge theory on a noncommutative space, and discuss the corrections away from this limit. Our analysis leads us to an equivalence between ordinary gauge fields and noncommutative gauge fields, which is realized by a change of variables that can be described explicitly. This change of variables is checked by comparing the ordinary Dirac-Born-Infeld theory with its noncommutative counterpart. We obtain a new perspective on noncommutative gauge theory on a torus, its T-duality, and Morita equivalence. We also discuss the D0/D4 system, the relation to M-theory in DLCQ, and a possible noncommutative version of the six-dimensional (2,0) theory.

Key words: Bosonic Strings; D-branes; Space-Time Symmetries; Gauge Symmetry

Received and accepted for publication 30 September 1999
Published 15 October 1999

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