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K. Slifer et al. Jefferson Lab E94010 Collaboration
Show Abstract
We present a measurement of the spin-dependent cross sections for the 3He→(e→,e′)X reaction in the quasielastic and resonance regions at a four-momentum transfer 0.1≤Q2≤0.9 GeV2. The spin-structure functions have been extracted and used to evaluate the nuclear Burkhardt-Cottingham and extended Gerasimov-Drell-Hearn sum rules for the first time. The data are also compared to an impulse approximation calculation and an exact three-body Faddeev calculation in the quasielastic region.
Phys. Rev. Lett. 101, 022303 (2008)
Cited 0 times
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O. Roig, G. Bélier, V. Méot, D. Abt, J. Aupiais, J.-M. Daugas, Ch. Jutier, G. Le Petit, A. Letourneau, F. Marie, and Ch. Veyssiére
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The neutron burnup cross section σburnupm on the long-lived metastable state of 177Lu has been measured from a specially designed isomeric target. The Maxwellian averaged cross section obtained for this reaction on 177Lum(Jπ=23/2-) is σburnupm=626±45 b at the reactor temperature T=323 K. The difference between the burnup cross section and the previously measured capture cross section σn,γ clearly shows a possible existence of 177Lum deexcitation via (n,n') inelastic neutron acceleration channels. The results are interpreted in terms of a statistical approach using parameters from a deformed optical potential calculation.
Phys. Rev. C 74, 054604 (2006)
Cited 0 times
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3.
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G. Bélier, O. Roig, J.-M. Daugas, O. Giarmana, V. Méot, A. Letourneau, F. Marie, Y. Foucher, J. Aupiais, D. Abt, Ch. Jutier, G. Le Petit, C. Bettoni, A. Gaudry, Ch. Veyssière, E. Barat, T. Dautremer, and J.-Ch. Trama
Show Abstract
The thermal neutron radiative capture cross section for the K isomeric state in 177Lu has been measured for the first time. Several 177Lum targets have been prepared and irradiated in various neutron fluxes at the Laüe Langevin Institute in Grenoble and at the CEA reactors OSIRIS and ORPHEE in Saclay. The method consists of measuring the 178Lu activity by γ-ray spectroscopy. The values obtained in four different neutron spectra have been used to calculate the resonance integral of the radiative capture cross section for 177Lum. In addition, an indirect method leads to the determination of the 177Lug neutron radiative capture cross section.
Phys. Rev. C 73, 014603 (2006)
Cited 1 times
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4.
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M. Amarian et al. Jefferson Lab E94010 Collaboration
Show Abstract
The generalized forward spin polarizabilities γ0 and δLT of the neutron have been extracted for the first time in a Q2 range from 0.1 to 0.9 GeV2. Since γ0 is sensitive to nucleon resonances and δLT is insensitive to the Δ resonance, it is expected that the pair of forward spin polarizabilities should provide benchmark tests of the current understanding of the chiral dynamics of QCD. The new results on δLT show significant disagreement with chiral perturbation theory calculations, while the data for γ0 at low Q2 are in good agreement with a next-to-leading-order relativistic baryon chiral perturbation theory calculation. The data show good agreement with the phenomenological MAID model.
Phys. Rev. Lett. 93, 152301 (2004)
Cited 2 times
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K. G. Fissum et al. Jefferson Lab Hall A Collaboration
Show Abstract
The physics program in Hall A at Jefferson Lab commenced in the summer of 1997 with a detailed investigation of the 16O(e,e′p) reaction in quasielastic, constant (q,ω) kinematics at Q2≈0.8 (GeV∕c)2, q≈1 GeV∕c, and ω≈445 MeV. Use of a self-calibrating, self-normalizing, thin-film waterfall target enabled a systematically rigorous measurement. Five-fold differential cross-section data for the removal of protons from the 1p-shell have been obtained for 0<pmiss<350 MeV∕c. Six-fold differential cross-section data for 0<Emiss<120 MeV were obtained for 0<pmiss<340 MeV∕c. These results have been used to extract the ALT asymmetry and the RL, RT, RLT, and RL+TT effective response functions over a large range of Emiss and pmiss. Detailed comparisons of the 1p-shell data with Relativistic Distorted-Wave Impulse Approximation (RDWIA), Relativistic Optical-Model Eikonal Approximation (ROMEA), and Relativistic Multiple-Scattering Glauber Approximation (RMSGA) calculations indicate that two-body currents stemming from meson-exchange currents (MEC) and isobar currents (IC) are not needed to explain the data at this Q2. Further, dynamical relativistic effects are strongly indicated by the observed structure in ALT at pmiss≈300 MeV∕c. For 25<Emiss<50 MeV and pmiss≈50 MeV∕c, proton knockout from the 1s1∕2-state dominates, and ROMEA calculations do an excellent job of explaining the data. However, as pmiss increases, the single-particle behavior of the reaction is increasingly hidden by more complicated processes, and for 280<pmiss<340 MeV∕c, ROMEA calculations together with two-body currents stemming from MEC and IC account for the shape and transverse nature of the data, but only about half the magnitude of the measured cross section. For 50<Emiss<120 MeV and 145<pmiss<340 MeV∕c, (e,e′pN) calculations which include the contributions of central and tensor correlations (two-nucleon correlations) together with MEC and IC (two-nucleon currents) account for only about half of the measured cross section. The kinematic consistency of the 1p-shell normalization factors extracted from these data with respect to all available 16O(e,e′p) data is also examined in detail. Finally, the Q2-dependence of the normalization factors is discussed.
Phys. Rev. C 70, 034606 (2004)
Cited 6 times
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6.
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G. Laveissière et al. Jefferson Lab Hall A Collaboration
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We report a virtual Compton scattering study of the proton at low c.m. energies. We have determined the structure functions PLL-PTT/ϵ and PLT, and the electric and magnetic generalized polarizabilities (GPs) αE(Q2) and βM(Q2) at momentum transfer Q2=0.92 and 1.76 GeV2. The electric GP shows a strong falloff with Q2, and its global behavior does not follow a simple dipole form. The magnetic GP shows a rise and then a falloff; this can be interpreted as the dominance of a long-distance diamagnetic pion cloud at low Q2, compensated at higher Q2 by a paramagnetic contribution from πN intermediate states.
Phys. Rev. Lett. 93, 122001 (2004)
Cited 3 times
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7.
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K. A. Aniol et al. HAPPEX Collaboration
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We have measured the parity-violating electroweak asymmetry in the elastic scattering of polarized electrons from protons. Significant contributions to this asymmetry could arise from the contributions of strange form factors in the nucleon. The measured asymmetry is A=−15.05±0.98(stat)±0.56(syst) ppm at the kinematic point ⟨θlab⟩=12.3° and ⟨Q2⟩=0.477 (GeV∕c)2. Based on these data as well as data on electromagnetic form factors, we extract the linear combination of strange form factors GEs+0.392GMs=0.014±0.020±0.010, where the first error arises from this experiment and the second arises from the electromagnetic form factor data. This paper provides a full description of the special experimental techniques employed for precisely measuring the small asymmetry, including the first use of a strained GaAs crystal and a laser-Compton polarimeter in a fixed target parity-violation experiment.
Phys. Rev. C 69, 065501 (2004)
Cited 27 times
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8.
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G. Laveissière et al. Jefferson Lab Hall A Collaboration
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Exclusive electroproduction of π0 mesons on protons in the backward hemisphere has been studied at Q2=1.0 GeV2 by detecting protons in the forward direction in coincidence with scattered electrons from the 4 GeV electron beam in Jefferson Lab’s Hall A. The data span the range of the total (γ*p) center-of-mass energy W from the pion production threshold to W=2.0 GeV. The differential cross sections σT+ϵσL, σTL, and σTT were separated from the azimuthal distribution and are presented together with the MAID and SAID parametrizations.
Phys. Rev. C 69, 045203 (2004)
Cited 5 times
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M. Amarian et al. Jefferson Lab E94010 Collaboration
Show Abstract
We have measured the spin structure functions g1 and g2 of 3He in a double-spin experiment by inclusively scattering polarized electrons at energies ranging from 0.862 to 5.058 GeV off a polarized 3He target at a 15.5° scattering angle. Excitation energies covered the resonance and the onset of the deep inelastic regions. We have determined for the first time the Q2 evolution of Γ1(Q2)=∫01g1(x,Q2)dx, Γ2(Q2)=∫01g2(x,Q2)dx, and d2(Q2)=∫01x2[2g1(x,Q2)+3g2(x,Q2)]dx for the neutron in the range 0.1≤Q2≤0.9 GeV2 with good precision. Γ1(Q2) displays a smooth variation from high to low Q2. The Burkhardt-Cottingham sum rule holds within uncertainties and d2 is nonzero over the measured range.
Phys. Rev. Lett. 92, 022301 (2004)
Cited 14 times
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10.
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M. Amarian et al. Jefferson Lab E94010 Collaboration
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We present data on the inclusive scattering of polarized electrons from a polarized 3He target at energies from 0.862 to 5.06 GeV, obtained at a scattering angle of 15.5°. Our data include measurements from the quasielastic peak, through the nucleon resonance region, and beyond, and were used to determine the virtual photon cross-section difference σ1/2-σ3/2. We extract the extended Gerasimov-Drell-Hearn integral for the neutron in the range of four-momentum transfer squared Q2 of 0.1–0.9 GeV2.
Phys. Rev. Lett. 89, 242301 (2002)
Cited 21 times
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11.
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N. Liyanage et al. (The Jefferson Lab Hall A Collaboration)
Show Abstract
We measured the cross section and response functions for the quasielastic 16O(e,e′p) reaction for missing energies 25≤Em≤120 MeV at missing momenta Pm≤340 MeV/c. For 25<Em<50 MeV and Pm≈60 MeV/c, the reaction is dominated by a single 1s1/2 proton knockout. At larger Pm, the single-particle aspects are increasingly masked by more complicated processes. Calculations which include pion exchange currents, isobar currents, and short-range correlations account for the shape and the transversity, but for only half of the magnitude of the measured cross section.
Phys. Rev. Lett. 86, 5670 (2001)
Cited 4 times
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12.
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S. Malov et al.
Show Abstract
The first (e→,e′p→) polarization transfer measurements on a nucleus heavier than deuterium have been carried out at Jefferson Laboratory. Transverse and longitudinal components of the polarization of protons ejected in the reaction 16O(e→,e′p→ ) were measured in quasielastic perpendicular kinematics at a Q2 of 0.8 (GeV/c)2. The data are in good agreement with state of the art calculations.
Phys. Rev. C 62, 057302 (2000)
Cited 16 times
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13.
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J. Gao et al. (The Jefferson Lab Hall A Collaboration)
Show Abstract
We have measured the cross section for quasielastic 1p-shell proton knockout in the 16O(e,e′p) reaction at ω = 0.439 GeV and Q2 = 0.8 (GeV/c)2 for missing momentum Pmiss≤355 MeV/c. We have extracted the response functions RL+TT, RT, RLT, and the left-right asymmetry, ALT, for the 1p1/2 and the 1p3/2 states. The data are well described by relativistic distorted wave impulse approximation calculations. At large Pmiss, the structure observed in ALT indicates the existence of dynamical relativistic effects.
Phys. Rev. Lett. 84, 3265 (2000)
Cited 28 times
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14.
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L. C. Alexa et al. (The Jefferson Lab Hall A Collaboration)
Show Abstract
The deuteron elastic structure function A(Q2) has been extracted in the range 0.7≤Q2≤6.0 (GeV/c)2 from cross section measurements of elastic electron-deuteron scattering in coincidence using the Hall A Facility of Jefferson Laboratory. The data are compared to theoretical models, based on the impulse approximation with the inclusion of meson-exchange currents, and to predictions of quark dimensional scaling and perturbative quantum chromodynamics.
Phys. Rev. Lett. 82, 1374 (1999)
Cited 34 times
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15.
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K. A. Aniol et al. (HAPPEX Collaboration)
Show Abstract
We have measured the parity-violating electroweak asymmetry in the elastic scattering of polarized electrons from the proton. The kinematic point [ 〈θlab〉 = 12.3° and 〈Q2〉 = 0.48 (GeV/c)2] is chosen to provide sensitivity, at a level that is of theoretical interest, to the strange electric form factor GEs. The result, A = -14.5±2.2 ppm, is consistent with the electroweak standard model and no additional contributions from strange quarks. In particular, the measurement implies GEs+0.39GMs = 0.023±0.034(stat)±0.022(syst)±0.026(δGEn), where the last uncertainty arises from the estimated uncertainty in the neutron electric form factor.
Phys. Rev. Lett. 82, 1096 (1999)
Cited 38 times
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