Data di Pubblicazione:
2011
Abstract:
We study the Wigner functions of the nucleon which provide multidimensional images of the quark distributions in phase space. They depend on both the transverse position and the three-momentum of the quark relative to the nucleon, and therefore combine in a single picture all the information contained in the generalized parton distributions and the transverse-momentum dependent parton distributions.
The quark orbital angular momentum is also calculated from its phase-space average weighted with the Wigner distribution of unpolarized quarks in a longitudinally polarized nucleon. The corresponding results obtained within different light-cone quark models are compared with alternative definitions of the quark orbital angular momentum, as given in terms of generalized parton distributions and transverse-momentum dependent parton distributions.
The quark orbital angular momentum is also calculated from its phase-space average weighted with the Wigner distribution of unpolarized quarks in a longitudinally polarized nucleon. The corresponding results obtained within different light-cone quark models are compared with alternative definitions of the quark orbital angular momentum, as given in terms of generalized parton distributions and transverse-momentum dependent parton distributions.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
Quark Wigner distributions; orbital angular momentum; quark and nucleon spin correlations
Elenco autori:
C., Lorce; Pasquini, Barbara
Link alla scheda completa:
Pubblicato in: