Published April 2001 | Version v1
Journal article

Complexified gravity in noncommutative spaces

  • 1. American Univ., Beirut (Lebanon). Dept. of Physics

Description

The presence of a constant background antisymmetric tensor for open strings or D-branes forces the space-time coordinates to be noncommutative. This effect is equivalent to replacing ordinary products in the effective theory by the deformed star product. An immediate consequence of this is that all fields get complexified. The only possible noncommutative Yang-Mills theory is the one with U(N) gauge symmetry. By applying this idea to gravity one discovers that the metric becomes complex. We show in this article that this procedure is completely consistent and one can obtain complexified gravity by gauging the symmetry U(1,D-1) instead of the usual SO(1,D-1). The final theory depends on a Hermitian tensor containing both the symmetric metric and antisymmetric tensor. In contrast to other theories of nonsymmetric gravity the action is both unique and gauge invariant. The results are then generalized to noncommutative spaces. (orig.)

Additional details

Publishing Information

Journal Title
Communications in Mathematical Physics
Journal Volume
218
Journal Issue
2
Journal Page Range
p. 283-292
ISSN
0010-3616
CODEN
CMPHAY

Optional Information

Notes
19 refs.