A statistical quark model, with quark energy levels given by a central linear confining potential is used to obtain the light sea-quark asymmetry, d̄/ū, and also for the ratio d/u, inside the nucleon. After adjusting a temperature parameter by the Gottfried sum rule violation, and chemical potentials by the valence up and down quark normalizations, the results are compared with experimental data available. © 2009 American Institute of Physics
Sea quark distributions in the nucleon have naively been expected to be generated perturbatively by ...
Sea quark distributions in the nucleon have naively been expected to be generated perturbatively by ...
Using global fits of valence u and d quark parton distributions and data on quark and nucleon form f...
Abstract. A statistical quark model, with quark energy levels given by a central linear confining po...
An improved statistical quark model, with quark energy levels given by a central linear confining po...
Within a statistical model of linear confined quarks we obtain the flavor asymmetry and correspondin...
The light anti-quark and quark distribution in the proton, as well as the neutron to proton ratio of...
During the eights and nineties many statistical/thermodynamical models were proposed to describe the...
The neutron-to-proton ratio of the structure functions, F(2)(n)/F(2)(p), as well as the correspondin...
The strangeness content of the nucleon is determined from a statistical model using confined quark l...
Recent deep inelastic data leads to an up-down quark asymmetry of the nucleon sea. Explanations of t...
AbstractTaking proton as an ensemble of quark–gluon Fock states and using the principle of detailed ...
Taking proton as an ensemble of quark-gluon Fock states and using the principle of detailed balance,...
The asymmetries of both light-flavor antiquark (d) over bar (x)-(u) over bar (x) and strange-antistr...
A physical model for parton densities in hadrons, based on Gaussian momentum fluctuations of partons...
Sea quark distributions in the nucleon have naively been expected to be generated perturbatively by ...
Sea quark distributions in the nucleon have naively been expected to be generated perturbatively by ...
Using global fits of valence u and d quark parton distributions and data on quark and nucleon form f...
Abstract. A statistical quark model, with quark energy levels given by a central linear confining po...
An improved statistical quark model, with quark energy levels given by a central linear confining po...
Within a statistical model of linear confined quarks we obtain the flavor asymmetry and correspondin...
The light anti-quark and quark distribution in the proton, as well as the neutron to proton ratio of...
During the eights and nineties many statistical/thermodynamical models were proposed to describe the...
The neutron-to-proton ratio of the structure functions, F(2)(n)/F(2)(p), as well as the correspondin...
The strangeness content of the nucleon is determined from a statistical model using confined quark l...
Recent deep inelastic data leads to an up-down quark asymmetry of the nucleon sea. Explanations of t...
AbstractTaking proton as an ensemble of quark–gluon Fock states and using the principle of detailed ...
Taking proton as an ensemble of quark-gluon Fock states and using the principle of detailed balance,...
The asymmetries of both light-flavor antiquark (d) over bar (x)-(u) over bar (x) and strange-antistr...
A physical model for parton densities in hadrons, based on Gaussian momentum fluctuations of partons...
Sea quark distributions in the nucleon have naively been expected to be generated perturbatively by ...
Sea quark distributions in the nucleon have naively been expected to be generated perturbatively by ...
Using global fits of valence u and d quark parton distributions and data on quark and nucleon form f...