English

Graviton Scattering and a Sum Rule for the c Anomaly in 4D CFT

High Energy Physics - Theory 2018-09-26 v2

Abstract

4D CFTs have a scale anomaly characterized by the coefficient cc, which appears as the coefficient of logarithmic terms in momentum space correlation functions of the energy-momentum tensor. By studying the CFT contribution to 4-point graviton scattering amplitudes in Minkowski space we derive a sum rule for cc in terms of TTOTT\mathcal{O} OPE coefficients. The sum rule can be thought of as a version of the optical theorem, and its validity depends on the existence of the massless and forward limits of the TTTT\langle TTTT \rangle correlation functions that contribute. The finiteness of these limits is checked explicitly for free scalar, fermion, and vector CFTs. The sum rule gives cc as a sum of positive terms, and therefore implies a lower bound on cc given any lower bound on TTOTT\mathcal{O} OPE coefficients. We compute the coefficients to the sum rule for arbitrary operators of spin 0 and 2, including the energy-momentum tensor.

Keywords

Cite

@article{arxiv.1801.05807,
  title  = {Graviton Scattering and a Sum Rule for the c Anomaly in 4D CFT},
  author = {Marc Gillioz and Xiaochuan Lu and Markus A. Luty},
  journal= {arXiv preprint arXiv:1801.05807},
  year   = {2018}
}

Comments

60 pages, 8 figures; v2: minor modifications, matches published version