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  • Direct Observation of Proto... Direct Observation of Proton-Neutron Short-Range Correlation Dominance in Heavy Nuclei
    Schmidt, A; Pybus, J R; Hrnjic, A ... Physical review letters, 05/2019, Volume: 122, Issue: 17
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    We measured the triple coincidence A(e,e^{'}np) and A(e,e^{'}pp) reactions on carbon, aluminum, iron, and lead targets at Q^{2}>1.5  (GeV/c)^{2}, x_{B}>1.1 and missing momentum >400  MeV/c. This was ...
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2.
  • Towards a resolution of the... Towards a resolution of the proton form factor problem: new electron and positron scattering data
    Adikaram, D; Rimal, D; Bennett, R P ... Physical review letters, 02/2015, Volume: 114, Issue: 6
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    There is a significant discrepancy between the values of the proton electric form factor, G(E)(p), extracted using unpolarized and polarized electron scattering. Calculations predict that small ...
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3.
  • Measurement of two- and thr... Measurement of two- and three-nucleon short-range correlation probabilities in nuclei
    Dashyan, N B; Anghinolfi, M; Asavapibhop, B ... Physical review letters, 03/2006, Volume: 96, Issue: 8
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    The ratios of inclusive electron scattering cross sections of 4He, 12C, and 56Fe to 3He have been measured at 1 < xB <. At Q2 > 1.4 GeV2, the ratios exhibit two separate plateaus, at 1.5 < xB < 2 and ...
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4.
  • Probing high-momentum proto... Probing high-momentum protons and neutrons in neutron-rich nuclei
    Duer, M; Mokeev, V; Montgomery, R A ... Nature, 08/2018, Volume: 560, Issue: 7720
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    The atomic nucleus is one of the densest and most complex quantum-mechanical systems in nature. Nuclei account for nearly all the mass of the visible Universe. The properties of individual nucleons ...
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5.
  • Modified structure of proto... Modified structure of protons and neutrons in correlated pairs
    Schmookler, B; Duer, M; Schmidt, A ... Nature 566, Issue: 7744
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    The atomic nucleus is made of protons and neutrons (nucleons), which are themselves composed of quarks and gluons. Understanding how the quark-gluon structure of a nucleon bound in an atomic nucleus ...
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6.
  • The CLAS12 software framewo... The CLAS12 software framework and event reconstruction
    Ziegler, V.; Baltzell, N.A.; Bossù, F. ... Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment, 04/2020, Volume: 959, Issue: C
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    We describe offline event reconstruction for the CEBAF Large Acceptance Spectrometer at 12 GeV (CLAS12), including an overview of the offline reconstruction framework and software tools, a ...
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7.
  • Momentum sharing in imbalan... Momentum sharing in imbalanced Fermi systems
    Hen, O.; Sargsian, M.; Weinstein, L. B. ... Science, 10/2014, Volume: 346, Issue: 6209
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    The atomic nucleus is composed of two different kinds of fermions: protons and neutrons. If the protons and neutrons did not interact, the Pauli exclusion principle would force the majority of ...
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  • Multidimensional, High Prec... Multidimensional, High Precision Measurements of Beam Single Spin Asymmetries in Semi-inclusive π^{+} Electroproduction off Protons in the Valence Region
    Kim, A; Joo, K; Amaryan, M ... Physical review letters, 02/2022, Volume: 128, Issue: 6
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    High precision measurements of the polarized electron beam-spin asymmetry in semi-inclusive deep inelastic scattering (SIDIS) from the proton have been performed using a 10.6 GeV incident electron ...
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9.
  • Electron-beam energy recons... Electron-beam energy reconstruction for neutrino oscillation measurements
    Khachatryan, M; Papadopoulou, A; Ashkenazi, A ... Nature, 11/2021, Volume: 599, Issue: 7886
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    Neutrinos exist in one of three types or 'flavours'-electron, muon and tau neutrinos-and oscillate from one flavour to another when propagating through space. This phenomena is one of the few that ...
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10.
  • Determination of the proton... Determination of the proton spin structure functions for 0.05<Q2<5 GeV2 using CLAS
    Fersch, R. G.; Guler, N.; Bosted, P. ... Physical review. C, 12/2017, Volume: 96, Issue: 6
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    We present the results of our final analysis of the full data set of g(1)(p) (Q(2)), the spin structure function of the proton, collected using CLAS at Jefferson Laboratory in 2000-2001. Polarized ...
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