English

The Holographic Supercurrent Anomaly

High Energy Physics - Theory 2015-06-26 v5

Abstract

The \gamma-trace anomaly of supersymmetry current in a supersymmetric gauge theory shares a superconformal anomaly multiplet with the chiral R-symmetry anomaly and the Weyl anomaly, and its holographic reproduction is a valuable test to the AdS/CFT correspondence conjecture. We investigate how the \gamma-trace anomaly of the supersymmetry current of {\cal N}=1 four-dimensional supersymmetric gauge theory in an {\cal N}=1 conformal supergravity background can be extracted out from the N=2{\cal N}=2 gauged supergravity in five dimensions. It is shown that the reproduction of this super-Weyl anomaly originates from the following two facts: First the {\cal N}=2 bulk supersymmetry transformation converts into {\cal N}=1 superconformal transformation on the boundary, which consists of {\cal N}=1 supersymmetry transformation and special conformal supersymmetry (or super-Weyl) transformation; second the supersymmetry variation of the bulk action of five-dimensional gauged supergravity is a total derivative. The non-compatibility of supersymmetry and the super-Weyl transformation invariance yields the holographic supersymmetry current anomaly. Furthermore, we speculate on that the contribution from the external gauge and gravitational background fields to the superconformal anomaly may have different holographic origin.

Keywords

Cite

@article{arxiv.hep-th/0304238,
  title  = {The Holographic Supercurrent Anomaly},
  author = {M. Chaichian and W. F. Chen},
  journal= {arXiv preprint arXiv:hep-th/0304238},
  year   = {2015}
}

Comments

22 pages, RevTex; more corrections

R2 v1 2026-07-22T15:16:52.141Z