Contact interaction analysis of octet baryon axialvector and pseudoscalar form factors
arXiv:2207.13811 · doi:10.1103/PhysRevD.106.054031
Abstract
Octet baryon axial, induced pseudoscalar, and pseudoscalar form factors are computed using a symmetry-preserving treatment of a vectorvector contact interaction (SCI), thereby unifying them with an array of other baryon properties and analogous treatments of semileptonic decays of pseudoscalar mesons. The baryons are treated as quark--plus--interacting-diquark bound states, whose structure is obtained by solving a Poincaré-covariant Faddeev equation. The approach is marked by algebraic simplicity, involves no free parameters, and since it is symmetry preserving, all consequences of partial conservation of the axial current are manifest. It is found that SCI results are consistent with only small violations of SU-flavour symmetry, an outcome which may be understood as a dynamical consequence of emergent hadron mass. The spin-flavour structure of the Poincaré-covariant baryon wave functions is expressed in the presence of both flavour-antitriplet scalar diquarks and flavour-sextet axialvector diquarks and plays a key role in determining all form factors. Considering neutral axial currents, SCI predictions for the flavour separation of octet baryon axial charges and, therefrom, values for the associated SU singlet, triplet, and octet axial charges are obtained. The results indicate that at the hadron scale, , valence degrees-of-freedom carry roughly 50% of an octet baryon's total spin. Since there are no other degrees-of-freedom at , the remainder may be associated with quark+diquark orbital angular momentum.
20 pages, 6 figures, 15 tables
References in corpus (29)
- Baryons as relativistic three-quark bound states
- Insights into the Emergence of Mass from Studies of Pion and Kaon Structure
- pi- and rho-mesons, and their diquark partners, from a contact interaction
- Diquark Correlations in Hadron Physics: Origin, Impact and Evidence
- Pion form factor from a contact interaction
- Spectrum of light- and heavy-baryons
- Empirical Consequences of Emergent Mass
- Octet-baryon axial-vector charges and SU(3)-breaking effects in the semileptonic hyperon decays
- Measurement of Muon Capture on the Proton to 1% Precision and Determination of the Pseudoscalar Coupling g_P
- Impressions of the Continuum Bound State Problem in QCD
- Emergent Hadron Mass in Strong Dynamics
- Masses of positive- and negative-parity hadron ground-states, including those with heavy quarks
- Concerning pion parton distributions
- Contact interaction analysis of pion GTMDs
- Emergence of pion parton distributions
- Proton and pion distribution functions in counterpoint
- Revisiting semileptonic decays of supported by baryon spectroscopy
- Nucleon axial-vector and pseudoscalar form factors, and PCAC relations
- Parton distributions of light quarks and antiquarks in the proton
- Dynamical diquarks in the transition
- Valence quark ratio in the proton
- Measurement of the Formation Rate of Muonic Hydrogen Molecules
- Axial form factor of the nucleon at large momentum transfers
- Form Factors of the Nucleon Axial Current
- Semileptonic transitions
- Distribution amplitudes of light diquarks
- Leading order mesonic and baryonic SU(3) low energy constants from lattice QCD
- Composition of low-lying -baryons
- Investigations on the flavor-dependent axial charges of the octet baryons
Cited by in corpus (5)
- Nucleon axial form factor at large momentum transfers
- Polarised parton distribution functions and proton spin
- Space-like Electromagnetic Form Factors of Lambda- and Sigma-Baryons from Quark-Diquark Faddeev Equations
- A contact interaction model for the and mesons in a SDE-BSE approach to QCD: masses, decay widths and transition form factors
- Weak interaction axial form factors of the octet baryons in nuclear medium