ScholarGate
Assistant

Comparer des méthodes

Examinez les méthodes sélectionnées côte à côte ; les lignes qui diffèrent sont mises en évidence.

Théorie des champs effectifs×Diagramme de Feynman×Équations du groupe de renormalisation×
DomainePhysique des particulesPhysique des particulesPhysique des particules
FamilleProcess / pipelineProcess / pipelineProcess / pipeline
Année d'origine197919491970
Auteur d'origineSteven WeinbergRichard FeynmanCurtis Callan and David Gross
TypeModel-independent approachVisualization and calculation frameworkScale dependence framework
Source fondatriceWeinberg, S. (1979). Baryon and lepton nonconserving processes. Physical Review Letters, 43(21), 1566. DOI ↗Feynman, R. P. (1949). The Theory of Positrons. Physical Review, 76(6), 749–759. DOI ↗Callan, C. G. (1970). Broken scale invariance in scalar field theory. Physical Review D, 2(6), 1541. DOI ↗
AliasEFT, effective theory, operator product expansionFeynman graph, interaction diagramRGE, running couplings, beta function evolution
Apparentées333
RésuméEffective Field Theory (EFT) is a general framework for studying physics at low energies in terms of the relevant degrees of freedom, without requiring complete knowledge of high-energy physics. By expanding in powers of energy, EFT provides model-independent parameterizations of new physics effects and systematic methods for computing precision predictions of the Standard Model.Feynman diagrams are graphical representations of particle interactions introduced by Richard Feynman in 1949. They provide an intuitive and systematic way to visualize and calculate amplitudes for quantum field theory processes, converting complex mathematical expressions into geometric pictures that reveal the underlying physics.Renormalization Group Equations (RGEs) describe how the coupling constants and masses of a quantum field theory evolve with energy scale. They are fundamental tools for understanding the scale dependence of physics, predicting the behavior of coupling strengths at different energies, and connecting high-energy physics to low-energy precision measurements.
ScholarGateJeu de données
  1. v1
  2. 3 Sources
  3. PUBLISHED
  1. v1
  2. 3 Sources
  3. PUBLISHED
  1. v1
  2. 3 Sources
  3. PUBLISHED

Aller à la recherche Télécharger les diapositives

ScholarGateComparer des méthodes: Effective Field Theory · Feynman Diagram · Renormalization Group Equations. Consulté le 2026-06-19 sur https://scholargate.app/fr/compare