Bloom-Gilman quark-hadron duality of nuclear spin structure function is studied by comparing the integral of g1 from perturbative QCD prediction in the scaling region to the moment of g1 in the resonance region. The spin structure function in the resonance region is estimated by the parametrization forms of non-resonance background and of resonance contributions. The uncertainties of our calculations due to those parametrization forms are discussed. Moreover, the effect of the Δ(1232)-resonance in the first resonance region and the role of the resonances in the second resonance region are explicitly shown. Elastic peak contribution to the duality is also analyzed
Recent data on the proton F{sub 2} structure function in the resonance region suggest that local qua...
I discuss recent results from CLAS and Hall A at Jefferson Lab on the measurement of inclusive spin ...
A phenomenological study of quark-hadron duality in electron and neutrino scattering on nuclei is pe...
New measurements of the spin structure functions of the proton and deuteron g1p(x,Q2) and g1d(x,Q2) ...
New measurements of the spin structure functions of the proton and deuteron g(1)(p)(x,Q(2)) and g(1)...
15 pages, 3 figuresNew measurements of the spin structure functions of the proton and deuteron g1p(x...
New measurements of the spin structure functions of the proton and deuteron g1p(x,Q2) and g1d(x,Q2) ...
The quark-hadron duality is studied in a systematic way for polarized and unpolarized structure func...
AbstractTarget mass corrections to proton spin structure functions in deep inelastic scattering regi...
In this paper, we present for the first time comprehensive and detailed results on the correspondenc...
Background: The response of hadrons, the bound states of the strong force (QCD), to external probes ...
We discuss the origin of Bloom-Gilman duality and the relationship between resonances and scaling in...
Recent data on the proton F2 structure function in the resonance region suggest that local quark-had...
A newly-obtained sample of inclusive electron-nucleon scattering data has been analyzed for precisio...
The Bloom-Gilman local duality of the inelastic structure function of the proton, the deuteron, and ...
Recent data on the proton F{sub 2} structure function in the resonance region suggest that local qua...
I discuss recent results from CLAS and Hall A at Jefferson Lab on the measurement of inclusive spin ...
A phenomenological study of quark-hadron duality in electron and neutrino scattering on nuclei is pe...
New measurements of the spin structure functions of the proton and deuteron g1p(x,Q2) and g1d(x,Q2) ...
New measurements of the spin structure functions of the proton and deuteron g(1)(p)(x,Q(2)) and g(1)...
15 pages, 3 figuresNew measurements of the spin structure functions of the proton and deuteron g1p(x...
New measurements of the spin structure functions of the proton and deuteron g1p(x,Q2) and g1d(x,Q2) ...
The quark-hadron duality is studied in a systematic way for polarized and unpolarized structure func...
AbstractTarget mass corrections to proton spin structure functions in deep inelastic scattering regi...
In this paper, we present for the first time comprehensive and detailed results on the correspondenc...
Background: The response of hadrons, the bound states of the strong force (QCD), to external probes ...
We discuss the origin of Bloom-Gilman duality and the relationship between resonances and scaling in...
Recent data on the proton F2 structure function in the resonance region suggest that local quark-had...
A newly-obtained sample of inclusive electron-nucleon scattering data has been analyzed for precisio...
The Bloom-Gilman local duality of the inelastic structure function of the proton, the deuteron, and ...
Recent data on the proton F{sub 2} structure function in the resonance region suggest that local qua...
I discuss recent results from CLAS and Hall A at Jefferson Lab on the measurement of inclusive spin ...
A phenomenological study of quark-hadron duality in electron and neutrino scattering on nuclei is pe...