Nucleon mass from a covariant three-quark Faddeev equation
arXiv:0912.2246 · doi:10.1103/PhysRevLett.104.201601
Abstract
We report the first study of the nucleon where the full Poincare-covariant structure of the three-quark amplitude is implemented in the Faddeev equation. We employ an interaction kernel which is consistent with contemporary studies of meson properties and aspects of chiral symmetry and its dynamical breaking, thus yielding a comprehensive approach to hadron physics. The resulting current-mass evolution of the nucleon mass compares well with lattice data and deviates only by ~5% from the quark-diquark result obtained in previous studies.
4 pages, 2 figures, 1 table
References in corpus (6)
- Infrared Properties of QCD from Dyson-Schwinger equations
- Probing the gluon self-interaction in light mesons
- Perspective on rainbow-ladder truncation
- Survey of J=0,1 mesons in a Bethe-Salpeter approach
- Delta-baryon mass in a covariant Faddeev approach
- Manifestation of three-body forces in three-body Bethe-Salpeter and light-front equations
Cited by in corpus (128)
- QCD and strongly coupled gauge theories: challenges and perspectives
- Baryons as relativistic three-quark bound states
- Explanation and Prediction of Observables using Continuum Strong QCD
- QCD at finite temperature and chemical potential from Dyson-Schwinger equations
- Gauge bosons at zero and finite temperature
- Light mesons in QCD and unquenching effects from the 3PI effective action
- The three-gluon vertex in Landau gauge
- Diquark Correlations in Hadron Physics: Origin, Impact and Evidence
- Nucleon electromagnetic form factors from the covariant Faddeev equation
- Completing the picture of the Roper resonance
- Tetraquark bound states in a Bethe-Salpeter approach
- Spectrum of light- and heavy-baryons
- The quark-gluon vertex in Landau gauge bound-state studies
- Spectra of heavy quarkonia in a Bethe-Salpeter-equation approach
- Empirical Consequences of Emergent Mass
- On light baryons and their excitations
- Baryon effects on the location of QCD's critical end point
- Bottomonium in a Bethe-Salpeter-equation study
- Nucleon axial and pseudoscalar form factors from the covariant Faddeev equation
- The light scalar mesons as tetraquarks
- Nucleon spin structure at very high-x
- Quark Number Fluctuations at Finite Temperature and Finite Chemical Potential via the Dyson-Schwinger Equation Approach
- Three Lectures on Hadron Physics
- Pion cloud effects on baryon masses
- Four-point functions and the permutation group S4
- Delta and Omega masses in a three-quark covariant Faddeev approach
- Light Baryon Spectroscopy
- Recent developments in bound-state calculations using the Dyson-Schwinger and Bethe-Salpeter equations
- Reflections upon the Emergence of Hadronic Mass
- Baryon and meson screening masses
- Revealing dressed-quarks via the proton's charge distribution
- Understanding the nucleon as a Borromean bound-state
- Poincaré-covariant analysis of heavy-quark baryons
- Delta and Omega electromagnetic form factors in a Dyson-Schwinger/Bethe-Salpeter approach
- Nucleon-to-Roper electromagnetic transition form factors at large-
- Contact-interaction Faddeev equation and, inter alia, proton tensor charges
- Nucleon to Delta electromagnetic transition in the Dyson-Schwinger approach
- Quark Wigner distributions in a light-cone spectator model
- Ghost dynamics in the soft gluon limit
- Beyond Rainbow-Ladder in bound state equations
- A covariant study of tensor mesons
- Nucleon elastic form factors at accessible large spacelike momenta
- Proton tensor charges from a Poincaré-covariant Faddeev equation
- Probing the quark-gluon interaction with hadrons
- Effects of a dressed quark-gluon vertex in vector heavy-light mesons and theory average of B(c)* meson mass
- Spin Zero Glueballs in the Bethe-Salpeter Formalism
- Proton and pion distribution functions in counterpoint
- Exploring smoking-gun signals of the Schwinger mechanism in QCD
- Octet and Decuplet masses: a covariant three-body Faddeev calculation
- Nucleon Compton scattering in the Dyson-Schwinger approach
- Matrix algorithms for solving (in)homogeneous bound state equations
- Jülich-Bonn-Washington Model for Pion Electroproduction Multipoles
- Hadronic decays of mesons and baryons in the Dyson-Schwinger approach
- Rho-meson, Bethe-Salpeter equation, and the far infrared
- Transition form factors: ,
- Hadronic Observables from Dyson-Schwinger and Bethe-Salpeter equations
- Quark tensor charge and electric dipole moment within the Schwinger-Dyson formalism
- Nucleon axial-vector and pseudoscalar form factors, and PCAC relations
- Intrinsic Transverse Motion of the Pion's Valence Quarks
- Valence quark ratio in the proton
- Aspects of open-flavour mesons in a comprehensive DSBSE study
- The role of momentum dependent dressing functions and vector meson dominance in hadronic light-by-light contributions to the muon g-2
- Excited hadrons and the analytical structure of bound-state interaction kernels
- The QCD chiral transition temperature in a Dyson-Schwinger-equation context
- Relativistic quark-diquark model of baryons with a spin-isospin transition interaction
- Electromagnetic transition form factors of baryons in the space-like momentum region
- New Perspective on Hybrid Mesons
- Practical scheme from QCD to phenomena via Dyson-Schwinger equations
- Unified description of hadron-photon and hadron-meson scattering in the Dyson-Schwinger approach
- More about the light baryon spectrum
- Quark spin and orbital angular momentum from proton GPDs
- First look at heavy-light mesons with a dressed quark-gluon vertex
- Strange quark matter and quark stars with the Dyson-Schwinger quark model
- N* Structure and Strong QCD
- Spontaneous chiral symmetry breaking in the massive Landau gauge: realistic running coupling
- Quark scalar, axial, and pseudoscalar charges in the Schwinger-Dyson formalism
- Hyperon elastic electromagnetic form factors in the space-like momentum region
- Coupled-channel analysis of pion- and eta-electroproduction with the Jülich-Bonn-Washington model
- Bethe-Salpeter studies of mesons beyond rainbow-ladder
- The impact of transverse Slavnov-Taylor identities on dynamical chiral symmetry breaking
- Four-quark scatterings in QCD I
- Nucleon Quark Distribution Functions from the Dyson-Schwinger Equations
- Contact interaction analysis of octet baryon axialvector and pseudoscalar form factors
- Polarised parton distribution functions and proton spin
- Covariant solution of the three-quark problem in quantum field theory: the nucleon
- Baryon fields with chiral symmetry V: Pion-Nucleon and Kaon-Nucleon Terms
- Light-quarkonium spectra and orbital-angular-momentum decomposition in a Bethe-Salpeter-equation approach
- Theory introduction to baryon spectroscopy
- Composition of low-lying -baryons
- Progress in the calculation of nucleon transition form factors
- Three-quark confinement potential from the Faddeev equation
- Three-body bound states with zero-range interaction in the Bethe-Salpeter approach
- Delta properties in the rainbow-ladder truncation of Dyson-Schwinger equations
- Tri-meson bound state via delocalized ~Bond
- Leptonic decays of D-wave vector quarkonia
- Bi-local baryon interpolating fields with two flavours
- Electroweak properties of octet baryons in light-cone quark-diquark model
- Hadronic bound-states in SU(2) from Dyson--Schwinger Equations
- The Podolsky propagator in gap and bound-state equations
- Charming quasi-exotic open-flavor mesons
- Poincare covariant pseudoscalar and scalar meson spectroscopy in Wigner-Weyl phase
- Hadron Structure using Continuum Schwinger Function Methods
- The light front wave functions and diffractive electroproduction of vector mesons
- Hadron properties from QCD bound-state equations: A status report
- -baryon axialvector and pseudoscalar form factors, and associated PCAC relations
- A comprehensive approach to the physics of mesons
- Electromagnetic baryon form factors in the Poincare-covariant Faddeev approach
- On the low-energy spectrum of an SU(2) gauge theory with dynamical fermions
- Bi-Local Baryon Interpolating Fields with Three Flavours
- Six-dimensional light-front Wigner distributions of the proton
- Towards a microscopic understanding of nucleon polarizabilities
- Quark sector of Coulomb gauge Quantum Chromodynamics
- Electromagnetic transition form factors of baryons in a relativistic Faddeev approach
- Electrocouplings in Dyson-Schwinger Equations
- Elastic and Transition Form Factors in DSEs
- Running Masses in the Nucleon and its Resonances
- Patterns of gauge symmetry in the background field method
- Relativistic Faddeev 3D Equations for Three-Body Bound States Without Two-Body Matrices
- Bethe-Salpeter equations: mesons beyond the rainbow-ladder truncation
- Two-flavor hybrid stars with the Dyson-Schwinger quark model
- S- and D-wave vector charmonia
- Nucleon-to-Resonance Form Factors at Large Photon Virtualities
- Some recent progress on quark pairings in dense quark and nuclear matter
- The role of vector meson dominance and running masses in the hadronic contributions to the muon
- Perturbative method to estimate meson masses in the framework of Bethe-Salpeter equation beyond its dominant interaction
- Mesons and Baryons: Parity Partners
- Delta and Omega electromagnetic form factors in a covariant three-body approach
- Flavour decomposition of electromagnetic transition form factors of nucleon resonances