Embedding Space Approach to Lorentzian CFT Amplitudes and Causal Spherical Functions
Abstract
Conformal Field Theory in a Minkowski setting is discussed in an embedding space approach, paying special attention to causality constraints for four-point amplitudes. The physics of dilatation and Lorentz boost is emphasized in specifying the non-compact Maximal Abelian subgroup (MASG) of . Reduction of a Conformal Field Theory (CFT) four-point amplitudes as functions of cross ratios is shown to be equivalent to enforcing bi-invariance, i.e., , with and an appropriate subgroup. Causality is imposed by introducing appropriate semigroups. Causal zonal spherical functions are constructed, making contact with Minkowski conformal blocks introduced previously.
Cite
@article{arxiv.2302.06469,
title = {Embedding Space Approach to Lorentzian CFT Amplitudes and Causal Spherical Functions},
author = {Pulkit Agarwal and Richard C. Brower and Timothy G. Raben and Chung-I Tan},
journal= {arXiv preprint arXiv:2302.06469},
year = {2024}
}
Comments
71 pages, 8 figures; added section 4.4 and 5.6; version accepted for publication in Phys.Rev.D