Renormalons beyond the Borel plane
arXiv:2011.11175 · doi:10.1103/PhysRevD.103.025019
Abstract
The renormalon singularities are a known source of the divergent behavior of asymptotic perturbative series from field theoretical models. These singularities live in the Borel plane and are responsible for ambiguities in the physical plane. We propose that field theories can have renormalons beyond the usual first Borel plane. We show an example with a scalar field theory where, considering a chain of cat's eyes diagrams, the model develops a Gevrey-3 asymptotic series.
2 figures, 9 pages
References in corpus (15)
- Center-stabilized Yang-Mills theory: confinement and large volume independence
- On the Light Massive Flavor Dependence of the Large Order Asymptotic Behavior and the Ambiguity of the Pole Mass
- Bottom and Charm Mass determinations from global fits to bound states at NLO
- Non-Perturbative Completion of Hopf-Algebraic Dyson-Schwinger Equations
- Renormalon-motivated evaluation of QCD observables
- Resurgence, Operator Product Expansion, and Remarks on Renormalons in Supersymmetric Yang-Mills
- Non-local Lagrangians from Renormalons and Analyzable Functions
- Precise Critical Exponents of the O(N)-Symmetric Quantum field Model using Hypergeometric-Meijer Resummation
- Perturbative Expansions in QCD Improved by Conformal Mappings of the Borel Plane
- Magnetic renormalons in a scalar self interacting theory
- UV contributions to energy of a static quark-antiquark pair in large approximation
- Lattice study of continuity and finite-temperature transition in two-dimensional SU(N) x SU(N) Principal Chiral Model
- More on the infrared renormalon in QCD(adj.) on
- Renormalons and the Top Quark Mass Measurement
- Existence of Asymptotic Expansions in Noncommutative Quantum Field Theories