Penrose limit and NCYM theories in diverse dimensions
Abstract
We obtain the Penrose limit of NCYM theories in dimensions which originate from (D, D) supergravity bound state configurations for in the so-called NCYM limit. In most cases the Penrose limit does not lead to solvable string theories except for six-dimensional NCYM theory. We obtain the masses of various bosonic coordinates and observe that they are light-cone time dependent and their squares can be negative as has also been observed in other cases in the literature. When the non-commutative effect is turned off we recover the results of Penrose limit of ordinary D-branes in the usual YM limit. We point out that for NCYM theory, there exists another null geodesic in the neighborhood of which the Penrose limit leads to a solvable string theory. We briefly discuss the quantization of this theory and show that this pp-wave background is half supersymmetric.
Keywords
Cite
@article{arxiv.hep-th/0209054,
title = {Penrose limit and NCYM theories in diverse dimensions},
author = {Somdatta Bhattacharya and S. Roy},
journal= {arXiv preprint arXiv:hep-th/0209054},
year = {2009}
}
Comments
latex, 22 pages, physical meaning of the choice of the parameter $l=1$ is given, comments on the negative mass^2 added and the background is shown to be half supersymmetric, references added, published version