Massless and Massive Higher Spins from Anti-de Sitter Space Waveguide
Abstract
Higgs mechanism to massive higher-spin gauge fields is an outstanding open problem. We investigate this issue in the context of Kaluza-Klein compactification. Starting from a free massless higher-spin field in -dimensional anti-de Sitter space and compactifying over a finite angular wedge, we obtain an infinite tower of heavy, light and massless higher-spin fields in -dimensional anti-de Sitter space. All massive higher-spin fields are described gauge invariantly in terms of St\"ueckelberg fields. The spectrum depends on the boundary conditions imposed at both ends of the wedges. We obseved that higher-derivative boundary condition is inevitable for spin greater than three. For some higher-derivative boundary conditions, equivalently, spectrum-dependent boundary conditions, we get a non-unitary representation of partially-massless higher-spin fields of varying depth. We present intuitive picture which higher-derivative boundary conditions yield non-unitary system in terms of boundary action. We argue that isotropic Lifshitz interfaces in Heisenberg magnet or Gross-Neveu model provides the holographic dual conformal field theory and propose experimental test of (inverse) Higgs mechanism for massive and partially massless higher-spin fields.
Cite
@article{arxiv.1605.06526,
title = {Massless and Massive Higher Spins from Anti-de Sitter Space Waveguide},
author = {Seungho Gwak and Jaewon Kim and Soo-Jong Rey},
journal= {arXiv preprint arXiv:1605.06526},
year = {2016}
}
Comments
v1. 62 pages, 7 figures, v2. 68 pages, 8 figures, published version