English

Giant Gravitons, BPS bounds and Noncommutativity

High Energy Physics - Theory 2009-10-31 v2

Abstract

It has been recently suggested that gravitons moving in AdSm×SnAdS_m \times S^n spacetimes along the SnS^n blow up into spherical (n2)(n-2) branes whose radius increases with increasing angular momentum. This leads to an upper bound on the angular momentum, thus ``explaining'' the stringy exclusion principle. We show that this bound is present only for states which saturate a BPS-like condition involving the energy EE and angular momentum JJ, EJ/RE \geq J/R, where RR is the radius of SnS^n. Restriction of motion to such states lead to a noncommutativity of the coordinates on SnS^n. As an example of motions which do not obey the exclusion principle bound, we show that there are finite action instanton configurations interpolating between two possible BPS states. We suggest that this is consistent with the proposal that there is an effective description in terms of supergravity defined on noncommutative spaces and noncommutativity arises here because of imposing supersymmetry.

Keywords

Cite

@article{arxiv.hep-th/0008088,
  title  = {Giant Gravitons, BPS bounds and Noncommutativity},
  author = {Sumit R. Das and Antal Jevicki and Samir D. Mathur},
  journal= {arXiv preprint arXiv:hep-th/0008088},
  year   = {2009}
}

Comments

15 pages, harvmac, corrected some typos

R2 v1 2026-07-22T14:59:27.925Z