English

The $a$-theorem and the Asymptotics of 4D Quantum Field Theory

High Energy Physics - Theory 2015-06-04 v2

Abstract

We study the possible IR and UV asymptotics of 4D Lorentz invariant unitary quantum field theory. Our main tool is a generalization of the Komargodski-Schwimmer proof for the aa-theorem. We use this to rule out a large class of renormalization group flows that do not asymptote to conformal field theories in the UV and IR. We show that if the IR (UV) asymptotics is described by perturbation theory, all beta functions must vanish faster than (1/lnμ)1/2(1/|\ln\mu|)^{1/2} as μ0\mu \to 0 (μ\mu \to \infty). This implies that the only possible asymptotics within perturbation theory is conformal field theory. In particular, it rules out perturbative theories with scale but not conformal invariance, which are equivalent to theories with renormalization group pseudocycles. Our arguments hold even for theories with gravitational anomalies. We also give a non-perturbative argument that excludes theories with scale but not conformal invariance. This argument holds for theories in which the stress-energy tensor is sufficiently nontrivial in a technical sense that we make precise.

Keywords

Cite

@article{arxiv.1204.5221,
  title  = {The $a$-theorem and the Asymptotics of 4D Quantum Field Theory},
  author = {Markus A. Luty and Joseph Polchinski and Riccardo Rattazzi},
  journal= {arXiv preprint arXiv:1204.5221},
  year   = {2015}
}

Comments

41 pages, 2 figures. v2: Arguments clarified, some side comments corrected, connection to previous work by Jack and Osborn described, conclusions unaffected