The free energy of a field theory can be considered as a functional of the free correlation function. As such it obeys a nonlinear functional differential equation that can be turned into a recursion relation. This is solved order by order in the coupling constant to find all connected vacuum diagrams with their proper multiplicities. The procedure is applied to a multicomponent scalar field theory with a φ4 self-interaction and then to a theory of two scalar fields φ and A with an interaction φ2A. All Feynman diagrams with external lines are obtained from functional derivatives of the connected vacuum diagrams with respect to the free correlation function. Finally, the recursive graphical construction is automatized by computer algeb...
We use Reshetikhin-Turaev graphical calculus to define Feynman diagrams and prove that asymptotic ex...
A novel functorial relationship in perturbative quantum field theory is pointed out that associates ...
Fleischer J, TARASOV OV. CALCULATION OF FEYNMAN DIAGRAMS FROM THEIR SMALL MOMENTUM EXPANSION. ZEITSC...
The free energy of a field theory can be considered as a functional of the free correlation function...
The free energy of a multicomponent scalar field theory is considered as a functional W[G,J] of the ...
The free energy of the Ginzburg-Landau theory satisfies a nonlinear functional differential equation...
Using functional derivatives with respect to free propagators and interactions we derive a closed se...
We consider O(N)-symmetric f4-theory in its spontaneously broken phase and investigate how the corre...
A recursive algebraic method which allows to obtain the Feynman or Schwinger parametric representati...
In this paper we work out the Feynman diagrams of a classical scalar field theory
International audienceThe diagrammatic coaction maps any given Feynman graph into pairs of graphs an...
Starting from a mathematical basis where one analyses and developing different techniques in how to ...
We propose a general coaction for families of integrals appearing in the evaluation of Feynman diagr...
Feynman periods are Feynman integrals that do not depend on external kinematics. Their computation, ...
An algorithm for calculating two-loop propagator type Feynman diagrams with arbitrary masses and ext...
We use Reshetikhin-Turaev graphical calculus to define Feynman diagrams and prove that asymptotic ex...
A novel functorial relationship in perturbative quantum field theory is pointed out that associates ...
Fleischer J, TARASOV OV. CALCULATION OF FEYNMAN DIAGRAMS FROM THEIR SMALL MOMENTUM EXPANSION. ZEITSC...
The free energy of a field theory can be considered as a functional of the free correlation function...
The free energy of a multicomponent scalar field theory is considered as a functional W[G,J] of the ...
The free energy of the Ginzburg-Landau theory satisfies a nonlinear functional differential equation...
Using functional derivatives with respect to free propagators and interactions we derive a closed se...
We consider O(N)-symmetric f4-theory in its spontaneously broken phase and investigate how the corre...
A recursive algebraic method which allows to obtain the Feynman or Schwinger parametric representati...
In this paper we work out the Feynman diagrams of a classical scalar field theory
International audienceThe diagrammatic coaction maps any given Feynman graph into pairs of graphs an...
Starting from a mathematical basis where one analyses and developing different techniques in how to ...
We propose a general coaction for families of integrals appearing in the evaluation of Feynman diagr...
Feynman periods are Feynman integrals that do not depend on external kinematics. Their computation, ...
An algorithm for calculating two-loop propagator type Feynman diagrams with arbitrary masses and ext...
We use Reshetikhin-Turaev graphical calculus to define Feynman diagrams and prove that asymptotic ex...
A novel functorial relationship in perturbative quantum field theory is pointed out that associates ...
Fleischer J, TARASOV OV. CALCULATION OF FEYNMAN DIAGRAMS FROM THEIR SMALL MOMENTUM EXPANSION. ZEITSC...