English

Quantum Regge Trajectories and the Virasoro Analytic Bootstrap

High Energy Physics - Theory 2019-06-26 v4

Abstract

Every conformal field theory (CFT) above two dimensions contains an infinite set of Regge trajectories of local operators which, at large spin, asymptote to "double-twist" composites with vanishing anomalous dimension. In two dimensions, due to the existence of local conformal symmetry, this and other central results of the conformal bootstrap do not apply. We incorporate exact stress tensor dynamics into the CFT2_2 analytic bootstrap, and extract several implications for AdS3_3 quantum gravity. Our main tool is the Virasoro fusion kernel, which we newly analyze and interpret in the bootstrap context. The contribution to double-twist data from the Virasoro vacuum module defines a "Virasoro Mean Field Theory" (VMFT), its spectrum includes a finite number of discrete Regge trajectories, whose dimensions obey a simple formula exact in the central charge cc and external operator dimensions. We then show that VMFT provides a baseline for large spin universality in two dimensions: in every unitary compact CFT2_2 with c>1c > 1 and a twist gap above the vacuum, the double-twist data approaches that of VMFT at large spin \ell. Corrections to the large spin spectrum from individual non-vacuum primaries are exponentially small in \sqrt{\ell} for fixed cc. We analyze our results in various large cc limits. Further applications include a derivation of the late-time behavior of Virasoro blocks at generic cc, a refined understanding and new derivation of heavy-light blocks, and the determination of the cross-channel limit of generic Virasoro blocks. We deduce non-perturbative results about the bound state spectrum and dynamics of quantum gravity in AdS3_3.

Keywords

Cite

@article{arxiv.1811.05710,
  title  = {Quantum Regge Trajectories and the Virasoro Analytic Bootstrap},
  author = {Scott Collier and Yan Gobeil and Henry Maxfield and Eric Perlmutter},
  journal= {arXiv preprint arXiv:1811.05710},
  year   = {2019}
}

Comments

68 pages, 6 figures. v2: typos corrected, section 3.4 added. v3: discussion in section 4 modified. v4: clarified and re-organized large spin discussion (Sec 3.2)

R2 v1 2026-06-23T05:15:02.369Z