AbstractAbstract
No abstract available
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4.5 to 18 GeV
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Journal Article
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Physical Review Letters; v. 30(21); p. 1087-1091
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BARYONS, BASIC INTERACTIONS, BEAMS, ELECTRON-NUCLEON INTERACTIONS, ELEMENTARY PARTICLES, ENERGY RANGE, FERMIONS, GEV RANGE, HADRONS, HYDROGEN ISOTOPES, INTERACTIONS, ISOTOPES, LEPTON BEAMS, LEPTON-BARYON INTERACTIONS, LEPTON-HADRON INTERACTIONS, LEPTON-NUCLEON INTERACTIONS, LIGHT NUCLEI, MEASURING INSTRUMENTS, NUCLEI, NUCLEONS, PARTICLE BEAMS, PARTICLE INTERACTIONS, RADIATION DETECTORS, SCATTERING, SPECTROMETERS, STABLE ISOTOPES
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No abstract available
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Source
Meeting of the division of particles and fields; Berkeley, California, USA; 13 Aug 1973; See CONF-730837--.
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Journal Article
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Conference
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AIP (Amer. Inst. Phys.) Conf. Proc; (no.14); p. 98-101
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Phys. Lett., B; v. 52(2); p. 249-252
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Phys. Lett., B; v. 51(4); p. 417-420
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Physical Review Letters; v. 33(9); p. 561-564
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[en] We have carried out an experimental study of the neutron and proton deep-inelastic electromagnetic structure functions. The structure functions were extracted from electron-proton and electron-deuteron differential cross sections measured in three experiments spanning the angles 60, 100, 150, 180, 190, 260, and 340. We report primarily on the large-angle (150--340) measurements. Neutron cross sections were extracted from the deuteron data using an impulse approximation. Our results are consistent with the hypothesis that the nucleon is composed of pointlike constituents. The variation of the cross section with angle suggests that the hypothetical constituents have spin 1/2. The data for sigma/sub n//sigma/sub p/, the ratio of the neutron and proton differential cross sections, are in the range 0.25 to 1.0, and are within the limits imposed by the quark model. Detailed studies of the structure functions were made for a range of the scaling variable ω from ω = 1.3 to ω = 10.0, and for a range of invariant four-momentum transfer Q2 from 1.0 to 20.0 GeV2. These studies indicate that the structure functions approximately scale in the variable ω, although significant deviations from scaling in ω are apparent in the region 1.3 < ω < 3.3. These deviations from scaling are in the same direction and of similar magnitude for both neutron and proton. The interpretation of the data in terms of various theoretical models is discussed
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Journal Article
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Physical Review. D, Particles Fields; ISSN 0556-2821; ; v. 20(7); p. 1471-1552
Country of publication
ANGULAR DISTRIBUTION, BORN APPROXIMATION, DEEP INELASTIC SCATTERING, DEUTERIUM TARGET, DIFFERENTIAL CROSS SECTIONS, ELECTROMAGNETIC INTERACTIONS, ELECTRON REACTIONS, ELECTRON-PROTON INTERACTIONS, IMPULSE APPROXIMATION, NEUTRONS, PROTONS, QUANTUM ELECTRODYNAMICS, QUARK MODEL, SPIN, STRUCTURE FUNCTIONS
ANGULAR MOMENTUM, BARYONS, BASIC INTERACTIONS, CATIONS, CHARGED PARTICLES, COMPOSITE MODELS, CROSS SECTIONS, DISTRIBUTION, ELECTRODYNAMICS, ELECTRON-NUCLEON INTERACTIONS, ELEMENTARY PARTICLES, FERMIONS, FIELD THEORIES, FUNCTIONS, HADRONS, HYDROGEN IONS, HYDROGEN IONS 1 PLUS, INELASTIC SCATTERING, INTERACTIONS, IONS, LEPTON REACTIONS, LEPTON-BARYON INTERACTIONS, LEPTON-HADRON INTERACTIONS, LEPTON-NUCLEON INTERACTIONS, MATHEMATICAL MODELS, NUCLEAR REACTIONS, NUCLEONS, PARTICLE INTERACTIONS, PARTICLE MODELS, PARTICLE PROPERTIES, QUANTUM FIELD THEORY, SCATTERING, TARGETS
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