most citedCharged pion form factor between Q^2=0.60 and 2.45 GeV^2. II. Determination of, and results for, the pion form factor

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nucl-ex2008258 cited

Charged pion form factor between Q^2=0.60 and 2.45 GeV^2. II. Determination of, and results for, the pion form factor

G. M. Huber, H. P. Blok, T. Horn +83

The charged pion form factor, Fpi(Q^2), is an important quantity which can be used to advance our knowledge of hadronic structure. However, the extraction of Fpi from data requires…

nucl-ex200789 cited

Scaling study of the pion electroproduction cross sections and the pion form factor

T. Horn

The H()n cross section was measured for a range of four-momentum transfer up to =3.91 GeV at values of the invariant mass, , above the resonance r…

nucl-ex200634 cited

Longitudinal-Transverse Separations of Structure Functions at Low for Hydrogen and Deuterium

V. Tvaskis

We report on a study of the longitudinal to transverse cross section ratio, , at low values of and , as determined from inclusive inelastic electron-hydrogen…

nucl-ex200645 cited

Proton Spin Structure in the Resonance Region

RSS Collaboration, F. R. Wesselmann, K. Slifer +70

We have examined the spin structure of the proton in the region of the nucleon resonances (1.085 GeV < W < 1.910 GeV) at an average four momentum transfer of Q^2 = 1.3 GeV^2. Using…

nucl-ex2006295 cited

Determination of the Charged Pion Form Factor at Q2=1.60 and 2.45 (GeV/c)2

Fpi2 collaboration, T. Horn, K. Aniol +51

The H(e,e'pi+)n cross section was measured at four-momentum transfers of Q2=1.60 and 2.45 GeV2 at an invariant mass of the photon nucleon system of W=2.22 GeV. The charged pion for…

nucl-ex200688 cited

Proton G_E/G_M from beam-target asymmetry

M. K. Jones

The ratio of the proton's electric to magnetic form factor, G_E/G_M, can be extracted in elastic electron-proton scattering by measuring either cross sections, beam-target asymmetr…