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The Holographic Contributions to the Sphere Free Energy

High Energy Physics - Theory 2022-02-16 v1

Abstract

We study which bulk couplings contribute to the S3S^3 free energy F(m)F(\mathfrak{m}) of three-dimensional N=2{\cal N} = 2 superconformal field theories with holographic duals, potentially deformed by boundary real-mass parameters m\mathfrak{m}. In particular, we show that F(m)F(\mathfrak{m}) is independent of a large class of bulk couplings that include non-chiral F-terms and all D-terms. On the other hand, in general, F(m)F(\mathfrak{m}) does depend non-trivially on bulk chiral F-terms, such as prepotential interactions, and on bulk real-mass terms. These conclusions can be reached solely from properties of the AdS super-algebra, osp(24)\mathfrak{osp}(2|4). We also consider massive vector multiplets in AdS, which in the dual field theory correspond to long single-trace superconformal multiplets of spin zero. We provide evidence that F(m)F(\mathfrak{m}) is insensitive to the vector multiplet mass and to the interaction couplings between the massive vector multiplet and massless ones. In particular, this implies that F(m)F(\mathfrak{m}) does not contain information about scaling dimensions or OPE coefficients of single-trace long scalar N=2{\cal N} = 2 superconformal multiplets.

Keywords

Cite

@article{arxiv.2107.12382,
  title  = {The Holographic Contributions to the Sphere Free Energy},
  author = {Damon J. Binder and Daniel Z. Freedman and Silviu S. Pufu and Bernardo Zan},
  journal= {arXiv preprint arXiv:2107.12382},
  year   = {2022}
}

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81 pages