Effective masses of diquarks
arXiv:nucl-th/0204020 · doi:10.1007/s00601-002-0111-7
Abstract
We study meson and diquark bound states using the rainbow-ladder truncation of QCD's Dyson-Schwinger equations. The infrared strength of the rainbow-ladder kernel is described by two parameters. The ultraviolet behavior is fixed by the one-loop renormalization group behavior of QCD, which ensures the correct asymptotic behavior of the Bethe-Salpeter amplitudes and brings important qualitative benefits. The diquark with the lowest mass is the scalar, followed by the axialvector and pseudoscalar diquark. This ordering can be anticipated from the meson sector.
14 pages, 4 figures, to appear in Few-Body Systems
Cited by in corpus (86)
- Dyson-Schwinger equations: a tool for hadron physics
- Baryons as relativistic three-quark bound states
- Collective perspective on advances in Dyson-Schwinger Equation QCD
- Explanation and Prediction of Observables using Continuum Strong QCD
- Masses of excited heavy baryons in the relativistic quark-diquark picture
- Nucleon electromagnetic form factors
- Hadron Properties and Dyson-Schwinger Equations
- Distribution Functions of the Nucleon and Pion in the Valence Region
- Aspects and consequences of a dressed-quark-gluon vertex
- Aspects of Hadron Physics
- pi- and rho-mesons, and their diquark partners, from a contact interaction
- Diquark Correlations in Hadron Physics: Origin, Impact and Evidence
- Survey of nucleon electromagnetic form factors
- Nucleon and elastic and transition form factors
- Completing the picture of the Roper resonance
- Masses of ground and excited-state hadrons
- Spectrum of light- and heavy-baryons
- QCD modeling of hadron physics
- Survey of J=0,1 mesons in a Bethe-Salpeter approach
- Strange and nonstrange baryon spectra in the relativistic interacting quark-diquark model with a Gürsey and Radicati-inspired exchange interaction
- Heavy-light diquark masses from QCD sum rules and constituent diquark models of tetraquarks
- Masses of ground-state mesons and baryons, including those with heavy quarks
- Empirical Consequences of Emergent Mass
- On light baryons and their excitations
- Sigma Terms of Light-Quark Hadrons
- The light scalar mesons as tetraquarks
- Analysis of the scalar and axial-vector heavy diquark states with QCD sum rules
- Three Lectures on Hadron Physics
- Masses of light tetraquarks and scalar mesons in the relativistic quark model
- B- to light-meson transition form factors
- Mind the gap
- Aspects of the confinement mechanism in Coulomb-gauge QCD
- Revealing dressed-quarks via the proton's charge distribution
- Poincaré-covariant analysis of heavy-quark baryons
- Understanding the nucleon as a Borromean bound-state
- Delta and Omega electromagnetic form factors in a Dyson-Schwinger/Bethe-Salpeter approach
- Masses of positive- and negative-parity hadron ground-states, including those with heavy quarks
- A covariant view on the nucleons' quark core
- 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
- Mass spectra and wave functions of tetraquarks
- Insights into the gamma* N -> Delta transition
- Parity partners in the baryon resonance spectrum
- Analysis of the light-flavor scalar and axial-vector diquark states with QCD sum rules
- Schwinger functions and light-quark bound states, and sigma terms
- Proton tensor charges from a Poincaré-covariant Faddeev equation
- Dissecting nucleon transition electromagnetic form factors
- Exploring the light-quark interaction
- Pion, sigma-meson and diquarks in the 2SC phase of dense cold quark matter
- Delta-baryon mass in a covariant Faddeev approach
- Hadronic decays of mesons and baryons in the Dyson-Schwinger approach
- Transition form factors: ,
- Spectrum and structure of octet and decuplet baryons and their positive-parity excitations
- The mass spectra and wave functions for the doubly heavy baryons with heavy diquark core
- Relativistic quark-diquark model of baryons with a spin-isospin transition interaction
- New Perspective on Hybrid Mesons
- Diquark properties from full QCD lattice simulations
- Jet color chemistry and anomalous baryon production in -collisions
- N* Structure and Strong QCD
- Light Scalar Mesons in the Improved Ladder QCD
- Current quark mass dependence of nucleon magnetic moments and radii
- Distribution amplitudes of light diquarks
- Theory introduction to baryon spectroscopy
- Light-quarkonium spectra and orbital-angular-momentum decomposition in a Bethe-Salpeter-equation approach
- Analysis of the scalar doubly heavy tetraquark states with QCD sum rules
- Progress in the calculation of nucleon transition form factors
- Investigation of Mass and Decay Characteristics of the All-light Tetraquark
- Delta properties in the rainbow-ladder truncation of Dyson-Schwinger equations
- Theory and Phenomenology of Hadrons
- Baryons and the Borromeo
- Ground state mass spectrum for scalar diquarks with Bethe-Salpeter equation
- Regge trajectories for the light diquarks
- Diquark bound states with a completely crossed ladder truncation
- The mass of the nucleon in a chiral quark-diquark model
- Hadron properties from QCD bound-state equations: A status report
- Mass spectra, wave functions and mixing effects of the baryon
- Revisiting light-flavor diquarks in the inverse matrix method of QCD sum rules
- Six-dimensional light-front Wigner distributions of the proton
- Investigation of Mass and Decay Characteristics of the Light-Strange Tetraquark
- Renormalizing the Quark-Meson-Diquark Model
- Nucleon viewed as a Borromean Bound-State
- Running Masses in the Nucleon and its Resonances
- Nucleon-to-Resonance Form Factors at Large Photon Virtualities
- Baryons in the Nambu Jona-Lasinio models
- Baryons with functional methods