On the D-term of the nucleon generalized parton distributions
arXiv:hep-ph/0701057 · doi:10.1016/j.physletb.2007.03.013
Abstract
It is known that some of the deeply-virtual-Compton-scattering observables, for instance, the beam-charge asymmetry in the hard electroproduction of real photons on the nucleon, are extremely sensitive to the magnitude of D-term appearing in the parameterization of the generalized parton distributions. We report a theoretical analysis of both the isoscalar and isovector parts of the nucleon D-term within the framework of the chiral quark soliton model, without recourse to the derivative expansion type approximation used in previous works.
10 pages, 2 eps-figures, small improvements, version to appear in Phys. Lett. B
References in corpus (2)
Cited by in corpus (21)
- Nucleon form-factors of the energy momentum tensor in the chiral quark-soliton model
- Gravitational form factors of the proton from lattice QCD
- Dispersive evaluation of the D-term form factor in deeply virtual Compton scattering
- Implication of the overlap representation for modelling generalized parton distributions
- The pion mass dependence of the nucleon form-factors of the energy momentum tensor in the chiral quark-soliton model
- Energy momentum tensor and the D-term in the bag model
- D-term and structure of point-like and composed spin-0 particles
- Radial excitations of Q-balls, and their D-term
- Energy momentum tensor, stability, and the D-term of Q-balls
- Effects of long-range forces on the D-term and the energy-momentum structure
- Gravitational form factors of the baryon octet with flavor SU(3) symmetry breaking
- 2D energy-momentum tensor distributions of nucleon in a large- quark model from ultra-relativistic to non-relativistic limit
- Gravitational form factors and mechanical properties of a quark at one loop in light-front Hamiltonian QCD
- Gluon contribution to the mechanical properties of a dressed quark in light-front Hamiltonian QCD
- Dispersive Determination of Nucleon Gravitational Form Factors
- Glue in hadrons at medium resolution and the QCD instanton vacuum
- Flavor structure of the energy-momentum tensor form factors of the proton
- Gravitational form factors of pions, kaons and nucleons from dispersion relations
- Energy-Momentum Tensor and D-term of Baryons in Top-down Holographic QCD
- Energy-momentum tensor form factor D(t) of proton and neutron
- Energy-momentum tensor form factors and spin density distribution in the nucleon calculated in a quantized Skyrme model with vector mesons