Transverse distortion and single-spin asymmetries for low-lying octet baryons
arXiv:2405.00445 · doi:10.1142/S0217751X24500763
Abstract
Being the fountainhead of transverse distortion and asymmetries in accordance to , we study the spin flip generalized parton distribution. We demonstrate this transverse deformation by using the quark-scalar diquark model and unveil a comparison among the low-lying strange baryons for distinct feasible combinations of quark-diquark pairs. Final-state interaction originating the correlation of a target spin and a virtual photon to the generated pion plane in semi-inclusive deep inelastic scattering has also been analyzed.
21 pages, 12 figures and 2 tables
References in corpus (11)
- Generalized parton correlation functions for a spin-1/2 hadron
- Implication of the overlap representation for modelling generalized parton distributions
- A light front quark-diquark model for the nucleons
- Tomography of pions and protons via transverse momentum dependent distributions
- Accessing the nucleon transverse structure in inclusive deep inelastic scattering
- Scale symmetry breaking, quantum anomalous energy and proton mass decomposition
- Generalized Parton Distributions of proton for non zero skewness in transverse and longitudinal position spaces
- Twist-4 T-even proton TMDs in the light-front quark-diquark model
- Charge and magnetization densities in transverse coordinate and impact parameter space
- Hadron Tomography
- Charge Distributions in Transverse Coordinate Space and in Impact Parameter Space