Alien calculus and a Schwinger--Dyson equation: two-point function with a nonperturbative mass scale
arXiv:1612.07813 · doi:10.1007/s11005-017-1016-1
Abstract
Starting from the Schwinger--Dyson equation and the renormalization group equation for the massless Wess--Zumino model, we compute the dominant nonperturbative contributions to the anomalous dimension of the theory, which are related by alien calculus to singularities of the Borel transform on integer points. The sum of these dominant contributions has an analytic expression. When applied to the two-point function, this analysis gives a tame evolution in the deep euclidean domain at this approximation level, making doubtful the arguments on the triviality of the quantum field theory with positive \(β\)-function. On the other side, we have a singularity of the propagator for time like momenta of the order of the renormalization group invariant scale of the theory, which has a nonperturbative relationship with the renormalization point of the theory. All these results do not seem to have an interpretation in terms of semiclassical analysis of a Feynman path integral.
15 pages, one embedded tikz figure. v2: prose polishing and misprints corrections, additional references v3: stronger case for acceleration. Generally matches the published version
References in corpus (5)
- An Étude in non-linear Dyson--Schwinger Equations
- Renormalization group functions for the Wess-Zumino model: up to 200 loops through Hopf algebras
- An Efficient Method for the Solution of Schwinger--Dyson equations for propagators
- A Schwinger--Dyson Equation in the Borel Plane: singularities of the solution
- Higher Order Corrections to the Asymptotic Perturbative Solution of a Schwinger-Dyson Equation
Cited by in corpus (9)
- A Primer on Resurgent Transseries and Their Asymptotics
- Non-Perturbative Completion of Hopf-Algebraic Dyson-Schwinger Equations
- Resurgence of the Renormalization Group Equation
- Resonant resurgent asymptotics from quantum field theory
- Non-Wilsonian ultraviolet completion via transseries
- Self-Dualities and Renormalization Dependence of the Phase Diagram in 3d Vector Models
- Resurgence and self-completion in renormalized gauge theories
- Analyticity domain of a Quantum Field Theory and Accelero-summation
- Ladders and rainbows in Minimal Subtraction