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The S-matrix Bootstrap I: QFT in AdS

2016/07/20 by Miguel F. Paulos, Joao Penedones, Jonathan Toledo +2 · 1 voice · 4 citations
Physics and Astronomy · #hep-th

paper · pdf · doi:10.1007/jhep11(2017)133

25+21 pages, 14 figures; v2: minor corrections

arxiv published 2016/07/20 · arxiv created 2017/08/22 · arxiv updated 2018/01/17

Abstract

We propose a strategy to study massive Quantum Field Theory (QFT) using conformal bootstrap methods. The idea is to consider QFT in hyperbolic space and study correlation functions of its boundary operators. We show that these are solutions of the crossing equations in one lower dimension. By sending the curvature radius of the background hyperbolic space to infinity we expect to recover flat-space physics. We explain that this regime corresponds to large scaling dimensions of the boundary operators, and discuss how to obtain the flat-space scattering amplitudes from the corresponding limit of the boundary correlators. We implement this strategy to obtain universal bounds on the strength of cubic couplings in 2D flat-space QFTs using 1D conformal bootstrap techniques. Our numerical results match precisely the analytic bounds obtained in our companion paper using S-matrix bootstrap techniques.

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