12 pages, 2 imbedded TiKZ picturesInternational audienceWe consider the effects of higherloop corrections to a Schwinger--Dyson equations for propagators. This is made possible by the efficiency of the methods we developed in preceding works, still using the supersymmetric Wess--Zumino model as a laboratory. We obtain the dominant contributions of the three and four loop primitive divergences at high order in perturbation theory, without the need for their full evaluations. Our main conclusion is that the asymptotic behavior of the perturbative series of the renormalization function remains unchanged, and we conjecture that this will remain the case for all finite order corrections
Changed title, match the version to be published in Nucl. Phys. B 12 pages, 2 tablesInternational au...
We consider the large order behavior of the perturbative expansion of the scalar φ4 field theory in ...
Dyson-Schwinger equations are integral equations in quantum field theory that describe the Green fun...
We consider the effects of higher loop corrections to a Schwinger–Dyson equation for propagators. Th...
16 pages, 2 figures. Some points clarified, typos corrected, matches the version to be published in ...
Using Dyson-Schwinger equations within an approach developed by Broadhurst and Kreimer and the renor...
We revisit the treatment of spurious ultraviolet divergences in the equation ofmotion of the gluon p...
We compare the solutions of one-scale Dyson-Schwinger equations in the Minimal subtraction (MS) sche...
Clarification of the presentation of results. Equations and results unchanged. Match the published v...
9 pages, no figures. Match of the published version, with the corrections in proof.International aud...
We obtain the contributions to the renormalization group functions of all the diagrams containing th...
The constraint of a progressive decrease in residual renormalization scale dependence with increasin...
The constraint of a progressive decrease in residual renormalization scale dependence with increasin...
This thesis is a contribution to the problem of extracting non-perturbative information from quantum...
We consider higher-derivative perturbations of quantum gravity and quantum field theories in curved ...
Changed title, match the version to be published in Nucl. Phys. B 12 pages, 2 tablesInternational au...
We consider the large order behavior of the perturbative expansion of the scalar φ4 field theory in ...
Dyson-Schwinger equations are integral equations in quantum field theory that describe the Green fun...
We consider the effects of higher loop corrections to a Schwinger–Dyson equation for propagators. Th...
16 pages, 2 figures. Some points clarified, typos corrected, matches the version to be published in ...
Using Dyson-Schwinger equations within an approach developed by Broadhurst and Kreimer and the renor...
We revisit the treatment of spurious ultraviolet divergences in the equation ofmotion of the gluon p...
We compare the solutions of one-scale Dyson-Schwinger equations in the Minimal subtraction (MS) sche...
Clarification of the presentation of results. Equations and results unchanged. Match the published v...
9 pages, no figures. Match of the published version, with the corrections in proof.International aud...
We obtain the contributions to the renormalization group functions of all the diagrams containing th...
The constraint of a progressive decrease in residual renormalization scale dependence with increasin...
The constraint of a progressive decrease in residual renormalization scale dependence with increasin...
This thesis is a contribution to the problem of extracting non-perturbative information from quantum...
We consider higher-derivative perturbations of quantum gravity and quantum field theories in curved ...
Changed title, match the version to be published in Nucl. Phys. B 12 pages, 2 tablesInternational au...
We consider the large order behavior of the perturbative expansion of the scalar φ4 field theory in ...
Dyson-Schwinger equations are integral equations in quantum field theory that describe the Green fun...