English

ABJM at Strong Coupling from M-theory, Localization, and Lorentzian Inversion

High Energy Physics - Theory 2022-02-16 v3

Abstract

We study the stress tensor multiplet four-point function in the 3d maximally supersymmetric ABJ(M) theory with Chern-Simons level k=2k=2, which in the large NN limit is holographically dual to weakly coupled M-theory on AdS4×S7/Z2AdS_4\times S^7/\mathbb{Z}_2. We use the Lorentzian inversion to compute the 1-loop correction to this holographic correlator coming from Witten diagrams with supergravity RR and the first higher derivative correction R4R^4 vertices, up to a finite number of contact terms that contribute to low spins where the inversion formula does not converge. We find a precise match with the corresponding terms in the 11d M-theory S-matrix by taking the flat space limit, which is not sensitive to these contact terms. We then conjecturally fix these contact terms by analytically continuing the inversion formula below its expected range of convergence, and verify this conjecture using supersymmetric localization. Finally, we compare some of the 1-loop CFT data to non-perturbative in NN bounds from the numerical conformal bootstrap, which we compute at unprecedently high accuracy, and find that the 1-loop corrections saturate the bounds in the large NN regime, which extends the previously observed match at tree level.

Keywords

Cite

@article{arxiv.2107.10274,
  title  = {ABJM at Strong Coupling from M-theory, Localization, and Lorentzian Inversion},
  author = {Luis F. Alday and Shai M. Chester and Himanshu Raj},
  journal= {arXiv preprint arXiv:2107.10274},
  year   = {2022}
}

Comments

47 pages + appendices, 3 figures. v3 typos corrected, accepted to JHEP

R2 v1 2026-06-24T04:24:31.107Z