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New Measurements of the Beam Normal Spin Asymmetries at Large Backward Angles with Hydrogen and Deuterium Targets
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Citations
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References
2017
Year
EngineeringNuclear Physicsδ ResonanceQuasielastic ScatteringSpin DynamicSpin PhenomenonNew MeasurementsLepton-nucleon ScatteringDeuterium TargetsQuantum ChromodynamicsObserved AsymmetriesHigh-energy Nuclear ReactionPhysicsQuantum Field TheoryNuclear TheoryAtomic PhysicsLarge Backward AnglesNatural SciencesParticle PhysicsApplied PhysicsBeam Transport System
New measurements of the beam normal single spin asymmetry in the electron elastic and quasielastic scattering on the proton and deuteron, respectively, at large backward angles and at ⟨Q^{2}⟩=0.22 (GeV/c)^{2} and ⟨Q^{2}⟩=0.35 ( GeV/c)^{2} are reported. The experimentally observed asymmetries are compared with the theoretical calculation of Pasquini and Vanderhaeghen [Phys. Rev. C 70, 045206 (2004).PRVCAN0556-281310.1103/PhysRevC.70.045206]. The agreement of the measurements with the theoretical calculations shows a dominance of the inelastic intermediate excited states of the nucleon, πN and the Δ resonance. The measurements explore a new, important parameter region of the exchanged virtual photon virtualities.
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