Massless Higher Spins and Holography
E. Sezgin, P. Sundell

TL;DR
This paper explores the holographic duality between large N superconformal field theories and higher spin gauge theories in AdS spaces, analyzing massless and massive higher spin fields, their interactions, symmetry breaking, and string theory limits.
Contribution
It provides a comprehensive survey of massless higher spin theories with maximal supersymmetry in various dimensions, introduces new results in D=7, and discusses symmetry breaking mechanisms and string theory limits.
Findings
Existence of a consistent truncation to massless higher spin fields.
Description of cubic couplings in minimal bosonic higher spin theories.
Proposal linking g_{YM}=0 to a critical string tension and finite string coupling.
Abstract
We treat free large N superconformal field theories as holographic duals of higher spin (HS) gauge theories expanded around AdS spacetime with radius R. The HS gauge theories contain massless and light massive AdS fields. The HS current correlators are written in a crossing symmetric form including only exchange of other HS currents. This and other arguments point to the existence of a consistent truncation to massless HS fields. A survey of massless HS theories with 32 supersymmetries in D=4,5,7 (where the 7D results are new) is given and the corresponding composite operators are discussed. In the case of AdS_4, the cubic couplings of a minimal bosonic massless HS gauge theory are described. We examine high energy/small tension limits giving rise to massless HS fields in the Type IIB string on AdS_5 x S^5 and M theory on AdS_{4/7} x S^{7/4}. We discuss breaking of HS symmetries to the…
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