English

Celestial amplitudes from conformal correlators with bulk-point kinematics

High Energy Physics - Theory 2024-05-14 v1

Abstract

We show that two- and three-point celestial (C)CFTd1_{d-1} amplitudes can be directly obtained from correlation functions in a unitary Lorentzian CFTd_d on R×Sd1\mathbb{R}\times S^{d-1}. The recipe involves a rescaling of the operators, followed by an expansion around a bulk point configuration and a transformation to an Sd1S^{d-1} conformal primary basis. The first two steps project the CFTd_d correlators onto distributions on Sd1S^{d-1}. The final step implements a dimensional reduction yielding CCFTd1_{d-1} amplitudes that are manifestly vanishing for all in/out configurations and Poincar\'e invariant. The dimensional reduction may be implemented either by evaluating certain time integral transforms around the bulk-point limit, or by analytically continuing the CFTd_d operator dimensions and restricting the operators to Sd1S^{d-1} time slices separated by π\pi in global time. The latter prescription generates the correct normalization for both two- and three-point functions. On the other hand, the celestial three-point amplitudes obtained via the former prescription are found to only agree after evaluating a residue at an integer linear combination of the CFTd_d conformal dimensions. The correct normalization may also be obtained by considering a different integration path in the uplift of the complexified time plane to its universal cover.

Keywords

Cite

@article{arxiv.2405.07972,
  title  = {Celestial amplitudes from conformal correlators with bulk-point kinematics},
  author = {Leonardo Pipolo de Gioia and Ana-Maria Raclariu},
  journal= {arXiv preprint arXiv:2405.07972},
  year   = {2024}
}

Comments

48 pages, 1 figure

R2 v1 2026-06-28T16:25:44.646Z