Noncommutative Geometry, Strings and Duality
arXiv:hep-th/9906122 · doi:10.1142/S0217979200001904
Abstract
In this talk, based on work done in collaboration with G. Landi and R.J Szabo, I will review how string theory can be considered as a noncommutative geometry based on an algebra of vertex operators. The spectral triple of strings is introduced, and some of the string symmetries, notably target space duality, are discussed in this framework.
Latex, 18 pages, Talk delivered at the Arbeitstagung: "The standard Model of Elementary particle Physics, Mathematical and Geometrical Aspects", Hesselberg, March 14-19 1999
References in corpus (9)
- D-branes and the Noncommutative Torus
- Morita equivalence and duality
- String Geometry and the Noncommutative Torus
- Duality Symmetries and Noncommutative Geometry of String Spacetime
- Gravity from Dirac Eigenvalues
- Noncommutative Geometry and Spacetime Gauge Symmetries of String Theory
- Target Space Duality in Noncommutative Geometry
- Smeared and unsmeared chiral vertex operators
- An Introduction to Noncommutative Geometry