English

Non-renormalisation Conditions in Type II String Theory and Maximal Supergravity

High Energy Physics - Theory 2010-10-27 v4

Abstract

This paper considers general features of the derivative expansion of Feynman diagram contributions to the four-graviton scattering amplitude in eleven-dimensional supergravity compactified on a two-torus. These are translated into statements about interactions of the form D^2k R^4 in type II superstring theories, assuming the standard M-theory/string theory duality relationships, which provide powerful constraints on the effective interactions. In the ten-dimensional IIA limit we find that there can be no perturbative contributions beyond k string loops (for k>0). Furthermore, the genus h=k contributions are determined exactly by the one-loop eleven-dimensional supergravity amplitude for all values of k. A plausible interpretation of these observations is that the sum of h-loop Feynman diagrams of maximally extended supergravity is less divergent than might be expected and could be ultraviolet finite in dimensions d < 4 + 6/h -- the same bound as for N=4 Yang--Mills.

Keywords

Cite

@article{arxiv.hep-th/0610299,
  title  = {Non-renormalisation Conditions in Type II String Theory and Maximal Supergravity},
  author = {Michael B. Green and Jorge G. Russo and Pierre Vanhove},
  journal= {arXiv preprint arXiv:hep-th/0610299},
  year   = {2010}
}

Comments

30 pages, 4 figures. v3 Some rewording, typos corrected and some references added. v4: Abstract rephrased. More typos corrected. Version to be published

R2 v1 2026-07-22T15:38:57.998Z