24 research outputs found

    Beam spin asymmetry measurements of deeply virtual π0 production with CLAS12

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    The new experimental measurements of beam spin asymmetry were performed for the deeply virtual exclusive pi0 production in a wide kinematic region with the photon virtualities Q2 up to 6.6 GeV2 and the Bjorken scaling variable xB in the valence regime. The data were collected by the CEBAF Large Acceptance Spectrometer (CLAS12) at Jefferson Lab with longitudinally polarized 10.6 GeV electrons scattered on an unpolarized liquid-hydrogen target. Sizable asymmetry values indicate a substantial contribution from transverse virtual photon amplitudes to the polarized structure functions. The interpretation of these measurements in terms of the Generalized Parton Distributions (GPDs) demonstrates their sensitivity to the chiral-odd GPD ET, which contains information on quark transverse spin densities in unpolarized and polarized nucleons and provides access to the nucleon's transverse anomalous magnetic moment. Additionally, the data were compared to a theoretical model based on a Regge formalism that was extended to the high photon virtualities

    Exclusive π\pi^{-} Electroproduction off the Neutron in Deuterium in the Resonance Region

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    New results for the exclusive and quasi-free cross sections off neutrons bound in deuterium γvn(p)pπ(p){\gamma}_vn(p) \rightarrow p{\pi}^{-} (p) are presented over a wide final state hadron angle range with a kinematic coverage of the invariant mass (WW) up to 1.825 GeV and the virtual photon four-momentum transfer squared (Q2Q^{2}) from 0.4 to 1.0 GeV2^2. The exclusive structure functions have been extracted and their Legendre moments were obtained. Final-state-interaction contributions have been kinematically separated from the extracted quasi-free cross sections off bound neutrons solely based on the analysis of the experimental data. These new results will serve as long-awaited input for phenomenological analyses to extract the Q2Q^{2} evolution of previously unavailable nNn \to N^{*} electroexcitation amplitudes and to improve state-of-the-art models of neutrino scattering off nuclei by augmenting the already available results from free protons

    Exclusive π\pi^{-} Electroproduction off the Neutron in Deuterium in the Resonance Region

    No full text
    New results for the exclusive and quasi-free cross sections off neutrons bound in deuterium γvn(p)pπ(p){\gamma}_vn(p) \rightarrow p{\pi}^{-} (p) are presented over a wide final state hadron angle range with a kinematic coverage of the invariant mass (WW) up to 1.825 GeV and the virtual photon four-momentum transfer squared (Q2Q^{2}) from 0.4 to 1.0 GeV2^2. The exclusive structure functions have been extracted and their Legendre moments were obtained. Final-state-interaction contributions have been kinematically separated from the extracted quasi-free cross sections off bound neutrons solely based on the analysis of the experimental data. These new results will serve as long-awaited input for phenomenological analyses to extract the Q2Q^{2} evolution of previously unavailable nNn \to N^{*} electroexcitation amplitudes and to improve state-of-the-art models of neutrino scattering off nuclei by augmenting the already available results from free protons

    Exclusive π\pi^{-} Electroproduction off the Neutron in Deuterium in the Resonance Region

    No full text
    New results for the exclusive and quasi-free cross sections off neutrons bound in deuterium γvn(p)pπ(p){\gamma}_vn(p) \rightarrow p{\pi}^{-} (p) are presented over a wide final state hadron angle range with a kinematic coverage of the invariant mass (WW) up to 1.825 GeV and the virtual photon four-momentum transfer squared (Q2Q^{2}) from 0.4 to 1.0 GeV2^2. The exclusive structure functions have been extracted and their Legendre moments were obtained. Final-state-interaction contributions have been kinematically separated from the extracted quasi-free cross sections off bound neutrons solely based on the analysis of the experimental data. These new results will serve as long-awaited input for phenomenological analyses to extract the Q2Q^{2} evolution of previously unavailable nNn \to N^{*} electroexcitation amplitudes and to improve state-of-the-art models of neutrino scattering off nuclei by augmenting the already available results from free protons

    Exclusive π\pi^{-} Electroproduction off the Neutron in Deuterium in the Resonance Region

    Get PDF
    New results for the exclusive and quasi-free cross sections off neutrons bound in deuterium γvn(p)pπ(p){\gamma}_vn(p) \rightarrow p{\pi}^{-} (p) are presented over a wide final state hadron angle range with a kinematic coverage of the invariant mass (WW) up to 1.825 GeV and the virtual photon four-momentum transfer squared (Q2Q^{2}) from 0.4 to 1.0 GeV2^2. The exclusive structure functions have been extracted and their Legendre moments were obtained. Final-state-interaction contributions have been kinematically separated from the extracted quasi-free cross sections off bound neutrons solely based on the analysis of the experimental data. These new results will serve as long-awaited input for phenomenological analyses to extract the Q2Q^{2} evolution of previously unavailable nNn \to N^{*} electroexcitation amplitudes and to improve state-of-the-art models of neutrino scattering off nuclei by augmenting the already available results from free protons

    Polarized structure function σLT\sigma_{LT'} from π0p\pi^0 p electroproduction data in the resonance region at 0.4GeV2^2<Q2^2<1.0GeV2^2

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    International audienceThe first results on the σLT′ structure function in exclusive π0p electroproduction at invariant masses of the final state of 1.5GeV&lt;W&lt;1.8GeV and in the range of photon virtualities 0.4GeV2&lt;Q2&lt;1.0GeV2 were obtained from data on beam spin asymmetries and differential cross sections measured with the CLAS detector at Jefferson Lab. The Legendre moments determined from the σLT′ structure function have demonstrated sensitivity to the contributions from the nucleon resonances in the second and third resonance regions. These new data on the beam spin asymmetries in π0p electroproduction extend the opportunities for the extraction of the nucleon resonance electro-excitation amplitudes in the mass range above 1.6 GeV

    Beam-Recoil Transferred Polarization in K+YK^+Y Electroproduction in the Nucleon Resonance Region with CLAS12

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    Beam-recoil transferred polarizations for the exclusive electroproduction of K+ΛK^+\Lambda and K+Σ0K^+\Sigma^0 final states from an unpolarized proton target have been measured using the CLAS12 spectrometer at Jefferson Laboratory. The measurements at beam energies of 6.535~GeV and 7.546~GeV span the range of four-momentum transfer Q2Q^2 from 0.3 to 4.5~GeV2^2 and invariant energy WW from 1.6 to 2.4~GeV, while covering the full center-of-mass angular range of the K+K^+. These new data extend the existing hyperon polarization data from CLAS in a similar kinematic range but from a significantly larger dataset. They represent an important addition to the world data, allowing for better exploration of the reaction mechanism in strangeness production processes, for further understanding of the spectrum and structure of excited nucleon states, and for improved insight into the strong interaction in the regime of non-perturbative dynamics
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