Search results for "Vertex function"

showing 10 items of 21 documents

The electron gas with a strong pairing interaction: Three particle correlations and the Thouless instability

2000

We derive simplified Faddeev type equations for the three particle T-matrix which are valid in the Hubbard model where only electrons with opposite spins interact. Using the approximation of dynamical mean field theory these equations are partially solved numerically for the attractive Hubbard model. It is shown that the three particle T-matrix contains a term vanishing $\sim T^2$ at the Thouless (or BCS) instability where the two-particle T-matrix diverges. Based on the three particle term we further derive the low density - strong coupling extension for the two-particle vertex function. We therefore understand our equations as a step towards a systematic low density expansion from the wea…

CouplingPhysicsHubbard modelStrongly Correlated Electrons (cond-mat.str-el)Condensed Matter - SuperconductivityVertex functionFOS: Physical sciencesElectronBCS theoryInstabilitySuperconductivity (cond-mat.supr-con)Condensed Matter - Strongly Correlated ElectronsPairingQuantum mechanicsQuantum electrodynamicsFermi gas
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QCD effective charge from the three-gluon vertex of the background-field method

2013

In this article we study in detail the prospects of determining the infrared finite QCD effective charge from a special kinematic limit of the vertex function corresponding to three background gluons. This particular Green's function satisfies a QED-like Ward identity, relating it to the gluon propagator, with no reference to the ghost sector. Consequently, its longitudinal form factors may be expressed entirely in terms of the corresponding gluon wave function, whose inverse is proportional to the effective charge. After reviewing certain important theoretical properties, we consider a typical lattice quantity involving this vertex, and derive its exact dependence on the various form facto…

High Energy Physics - TheoryPhysicsQuantum chromodynamicsNuclear and High Energy PhysicsDynamical symmetry breakingBackground field methodHigh Energy Physics::LatticeHigh Energy Physics - Lattice (hep-lat)High Energy Physics::PhenomenologyFísicaFOS: Physical sciencesVertex functionPropagatorEffective nuclear chargeVertex (geometry)GluonHigh Energy Physics - PhenomenologyTheoretical physicsHigh Energy Physics - Phenomenology (hep-ph)High Energy Physics - LatticeHigh Energy Physics - Theory (hep-th)Quantum electrodynamicsQuantum ChromodynamicsWave functionPhysical Review D
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Conformal Symmetry and Differential Regularization of the Three-Gluon Vertex

1992

The conformal symmetry of the QCD Lagrangian for massless quarks is broken both by renormalization effects and the gauge fixing procedure. Renormalized primitive divergent amplitudes have the property that their form away from the overall coincident point singularity is fully determined by the bare Lagrangian, and scale dependence is restricted to $\delta$-functions at the singularity. If gauge fixing could be ignored, one would expect these amplitudes to be conformal invariant for non-coincident points. We find that the one-loop three-gluon vertex function $\Gamma_{\mu\nu\rho}(x,y,z)$ is conformal invariant in this sense, if calculated in the background field formalism using the Feynman ga…

High Energy Physics - TheoryPhysicsQuantum chromodynamicsUltraviolet divergenceHigh Energy Physics::LatticeHigh Energy Physics::PhenomenologyGeneral Physics and AstronomyVertex functionFOS: Physical sciencesFísicaRenormalizationsymbols.namesakeHigh Energy Physics - Theory (hep-th)Conformal symmetryRegularization (physics)symbolsFeynman diagramGauge fixingMathematical physics
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s-wave pion-nucleus optical potential

2007

We calculate the s-wave part of the pion-nucleus optical potential using a unitarized chiral approach that has been previously used to simultaneously describe pionic hydrogen and deuterium data as well as low energy pi N scattering in the vacuum. This energy dependent model allows for additional isoscalar parts in the potential from multiple rescattering. We consider Pauli blocking and pion polarization in an asymmetric nuclear matter environment. Also, higher order corrections of the pi N amplitude are included. The model can accommodate the repulsion required by phenomenological fits, though the theoretical uncertainties are bigger than previously thought. At the same time, we also find a…

Nuclear and High Energy PhysicsParticle physicsscattering amplitude [pi nucleon]Nuclear Theorymedia_common.quotation_subjectIsoscalarpartial waveNuclear TheoryFOS: Physical sciencesAsymmetryrenormalizationNuclear physicsNuclear Theory (nucl-th)symbols.namesakePionPauli exclusion principlemesic atom [deuterium]unitarityddc:530higher-order [Feynman graph]nuclear reaction [pi nucleus]numerical calculationsNuclear Experimentmedia_commonPhysicschiral [symmetry]UnitarityIsovectorN(1440)FísicaNuclear mattermesic atom [hydrogen]propagator [pi]Scattering amplitudenuclear mattersymbolsoptical [potential]correction [vertex function]
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Commutators of second-class axial currents with normal weak currents and consequences for particle decays

1981

Second-class weak axial currents are studied in the framework of normal weak and electromagnetic currents. Equal time commutators between normal and abnormal axial currents and the isoscalar electromagnetic current are postulated and their consequences are worked out. A number of predictions for masses, coupling constants and decay properties are derived and are compared to available data.

Particle accelerationPhysicsCoupling constantPhysics and Astronomy (miscellaneous)Quantum electrodynamicsIsoscalarParticleVertex functionElementary particleField theory (psychology)Quantum field theoryEngineering (miscellaneous)Zeitschrift für Physik C Particles and Fields
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Right-handed neutrino magnetic moments

2009

PACS numbers: 14.60.St, 13.15.+g, 13.35.Hb, 13.66.Hk

PhysicsHistoryNuclear and High Energy PhysicsParticle physicsMagnetic momentElectron–positron annihilationElectroweak interactionHigh Energy Physics::PhenomenologyVertex functionFOS: Physical sciencesPartícules (Física nuclear)Computer Science ApplicationsEducationHigh Energy Physics - PhenomenologyOperator (computer programming)High Energy Physics - Phenomenology (hep-ph)BibliographyCP violationHigh Energy Physics::ExperimentNeutrino
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〈VAP〉 Green function in the resonance region

2004

Abstract We analyze the 〈 V A P 〉 three-point function of vector, axial-vector and pseudoscalar currents. In the spirit of large N C , a resonance dominated Green function is confronted with the leading high-energy behaviour from the operator product expansion. The matching is shown to be fully compatible with a chiral resonance Lagrangian and it allows to determine some of the chiral low-energy constants of O ( p 6 ) .

PhysicsNuclear and High Energy PhysicsChiral symmetry010308 nuclear & particles physicsHigh Energy Physics::LatticePropagatorVertex functionFunction (mathematics)01 natural sciencesResonance (particle physics)Pseudoscalarsymbols.namesakeQuantum electrodynamics0103 physical sciencessymbolsOperator product expansion010306 general physicsLagrangianPhysics Letters B
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Two-Loop Vertices in Quantum Field Theory: Infrared Convergent Scalar Configurations

2003

A comprehensive study is performed of general massive, scalar, two-loop Feynman diagrams with three external legs. Algorithms for their numerical evaluation are introduced and discussed, numerical results are shown for all different topologies, and comparisons with analytical results, whenever available, are performed. An internal cross-check, based on alternative procedures, is also applied. The analysis of infrared divergent configurations, as well as the treatment of tensor integrals, will be discussed in two forthcoming papers.

PhysicsNuclear and High Energy PhysicsLoop (graph theory)Wave function renormalizationScalar (physics)Vertex functionFOS: Physical sciencesTheoretical physicssymbols.namesakeHigh Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)Quantum mechanicsBibliographysymbolsFeynman diagramTensorQuantum field theory
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Nonlinear dynamics in three-dimensional QED and nontrivial infrared structure

1999

In this work we consider a coupled system of Schwinger-Dyson equations for self-energy and vertex functions in QED_3. Using the concept of a semi-amputated vertex function, we manage to decouple the vertex equation and transform it in the infrared into a non-linear differential equation of Emden-Fowler type. Its solution suggests the following picture: in the absence of infrared cut-offs there is only a trivial infrared fixed-point structure in the theory. However, the presence of masses, for either fermions or photons, changes the situation drastically, leading to a mass-dependent non-trivial infrared fixed point. In this picture a dynamical mass for the fermions is found to be generated c…

PhysicsNuclear and High Energy PhysicsNonlinear systemInfraredQuantum mechanicsBibliographyStructure (category theory)FísicaVertex functionPropagatorFixed pointPhysical Review D
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The effective neutrino charge radius in the presence of fermion masses

2005

Abstract We show how the crucial gauge cancellations leading to a physical definition of an effective neutrino charge radius persist in the presence of non-vanishing fermion masses. An explicit one-loop calculation demonstrates that, as happens in the massless case, the pinch technique rearrangement of the Feynman amplitudes, together with the judicious exploitation of the fundamental current relation J α ( 3 ) = 2 ( J Z + sin θ w 2 J γ ) α , leads to a completely gauge independent definition of the effective neutrino charge radius. Using the formalism of the Nielsen identities it is further proved that the same cancellation mechanism operates unaltered to all orders in perturbation theory.

PhysicsNuclear and High Energy PhysicsParticle physicsHigh Energy Physics::PhenomenologyVertex functionFísicaFermionMassless particlesymbols.namesakeAmplitudeCharge radiusQuantum electrodynamicssymbolsPinchFeynman diagramNeutrino
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