English

Causality Constraints on Corrections to the Graviton Three-Point Coupling

High Energy Physics - Theory 2017-03-22 v1 General Relativity and Quantum Cosmology

Abstract

We consider higher derivative corrections to the graviton three-point coupling within a weakly coupled theory of gravity. Lorentz invariance allows further structures beyond the one present in the Einstein theory. We argue that these are constrained by causality. We devise a thought experiment involving a high energy scattering process which leads to causality violation if the graviton three-point vertex contains the additional structures. This violation cannot be fixed by adding conventional particles with spins J2J \leq 2. But, it can be fixed by adding an infinite tower of extra massive particles with higher spins, J>2J > 2. In AdS theories this implies a constraint on the conformal anomaly coefficients acc1Δgap2\left|{a - c \over c} \right| \lesssim {1 \over \Delta_{gap}^2} in terms of Δgap\Delta_{gap}, the dimension of the lightest single particle operator with spin J>2J > 2. For inflation, or de Sitter-like solutions, it indicates the existence of massive higher spin particles if the gravity wave non-gaussianity deviates significantly from the one computed in the Einstein theory.

Keywords

Cite

@article{arxiv.1407.5597,
  title  = {Causality Constraints on Corrections to the Graviton Three-Point Coupling},
  author = {Xian O. Camanho and Jose D. Edelstein and Juan Maldacena and Alexander Zhiboedov},
  journal= {arXiv preprint arXiv:1407.5597},
  year   = {2017}
}

Comments

50+22 pages, 13 figures

R2 v1 2026-06-22T05:09:06.555Z