English

Penrose limit and NCYM theories in diverse dimensions

High Energy Physics - Theory 2009-11-07 v4

Abstract

We obtain the Penrose limit of NCYM theories in dimensions 3d63 \leq d \leq 6 which originate from (D(p2)(p-2), Dpp) supergravity bound state configurations for 2p52 \leq p \leq 5 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 Dpp-branes in the usual YM limit. We point out that for d=6d = 6 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