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Showing 1 to 7 of 7 for “"Spin structure functions"”.

  1. Spin Structure Functions of the Deuteron Measured with CLAS in and Above the Resonance Region

    <p>Spin structure functions of the nucleon in the region of large <em>x</em> and small to moderate <em>Q</em><sup>2</sup> continue to be of high current interest. The first moment of the spin structure function <em>g</em><sub>1</sub>, Γ<sub>1</sub>, goes through a rapid transition from the photon …

    odu Repository record for Spin Structure Functions of the Deuteron Measured with CLAS in and Above the Resonance Region (opens in a new tab)

  2. A Precision Measurement of the Neutron d2: Probing the Color Force

    The g2 nucleon spin-dependent structure function measured in electron deep inelastic scattering contains information beyond the simple parton model description of the nucleon. It provides insight into quark-gluon correlations and a path to access the confining local color force a struck quark …

    temple Repository record for A Precision Measurement of the Neutron d2: Probing the Color Force (opens in a new tab)

  3. Microscopic Calculations in Diffractive Deep Inelastic Scattering

    … find higher twist corrections to the transverse structure functions and predict the diffractive slope and azimuthal asymmetries. We establish duality correspondence between diffraction into low-mass continuum and vector meson production, and calculate the diffractive contribution to the spin

    vt Repository record for Microscopic Calculations in Diffractive Deep Inelastic Scattering (opens in a new tab)

  4. Spin structure of the proton and the Q² evolution of the Gerasimov-Drell-Hearn integral

    … electron beam. For the first time, proton spin structure functions were studied with precision in the resonance region. The data indicate that a dramatic change in the spin structure occurs between the deep inelastic high Q2 region and the region of low Q2 where photons become nearly real.

    mit Repository record for Spin structure of the proton and the Q² evolution of the Gerasimov-Drell-Hearn integral (opens in a new tab)

  5. Precision Measurement of the Spin Structure of the Proton and the Deuteron

    … Stanford Linear Accelerator Center measured the spin structure functions <em>g</em>1 and <em>g</em>2 of the proton and deuteron using deep inelastic scattering of 50 GeV polarized electrons from dynamically polarized, solid <sup>15</sup>NH<sub>3</sub> and <sup>6</sup>LiD targets. Three …

    odu Repository record for Precision Measurement of the Spin Structure of the Proton and the Deuteron (opens in a new tab)

  6. Spin Structure of the Deuteron

    <p>Double spin asymmetries for the proton and the deuteron have been measured in the EG1b experiment using the CLAS detector at Jefferson Lab. Longitudinally polarized electrons at energies 1.6, 2.5, 4.2 and 5.7 GeV were scattered from longitudinally polarized NH3 and ND3 targets. The double spin

    odu Repository record for Spin Structure of the Deuteron (opens in a new tab)

  7. Measurement of Generalized GDH Integrand for the Neutron and 3He at Low Q2

    … the nuclear forces, and the nucleon mass and structure, still remain in the non-perturbative regime. Dispersive sum rules, based on universal principles, provide a data-driven approach to study the nucleon structure without model-dependencies. Among those sum rules, the well known …

    duke Repository record for Measurement of Generalized GDH Integrand for the Neutron and 3He at Low Q2 (opens in a new tab)