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1.
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C. B. Crawford et al.
Show Abstract
We report the first precision measurement of the proton electric to magnetic form factor ratio from spin-dependent elastic scattering of longitudinally polarized electrons from a polarized hydrogen internal gas target. The measurement was performed at the MIT-Bates South Hall Ring over a range of four-momentum transfer squared Q2 from 0.15 to 0.65 (GeV/c)2. Significantly improved results on the proton electric and magnetic form factors are obtained in combination with existing cross-section data on elastic electron-proton scattering in the same Q2 region.
Phys. Rev. Lett. 98, 052301 (2007)
Cited 3 times
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2.
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P. Bourgeois et al.
Show Abstract
The mean square polarizability radii of the proton have been measured for the first time in a virtual-Compton-scattering experiment performed at the MIT-Bates out-of-plane scattering facility. Response functions and polarizabilities obtained from a dispersion analysis of the data at Q2=0.057 GeV2/c2 are in agreement with O(p3) heavy baryon chiral perturbation theory. The data support the dominance of mesonic effects in the polarizabilities.
Phys. Rev. Lett. 97, 212001 (2006)
Cited 1 times
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3.
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N. F. Sparveris et al.
Show Abstract
We report new precise H(e,e′p)π0 measurements at the Δ(1232) resonance at Q2=0.127 (GeV/c)2 obtained at the MIT-Bates out-of-plane scattering facility which are particularly sensitive to the transverse electric amplitude (E2) of the γ*N→Δ transition. The new data have been analyzed together with those of earlier measurements to yield precise quadrupole to dipole amplitude ratios: Re(E1+3/2/M1+3/2)=(-2.3±0.3stat+syst±0.6model)% and Re(S1+3/2/M1+3/2)=(-6.1±0.2stat+syst±0.5model)% for M1+3/2=(41.4±0.3stat+syst±0.4model)(10-3/mπ+). The derived amplitudes give credence to the conjecture of deformation in hadrons favoring, at low Q2, the dominance of mesonic effects.
Phys. Rev. Lett. 94, 022003 (2005)
Cited 12 times
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4.
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T. M. Ito et al. SAMPLE Collaboration
Show Abstract
We report on a new measurement of the parity-violating asymmetry in quasielastic electron scattering from the deuteron at backward angles at Q2=0.038 (GeV/c)2. This quantity provides a determination of the neutral weak axial vector form factor of the nucleon, which can potentially receive large electroweak corrections. The measured asymmetry A=-3.51±0.57 (stat)±0.58 (syst) ppm is consistent with theoretical predictions. We also report on updated results of the previous experiment at Q2=0.091 (GeV/c)2, which are also consistent with theoretical predictions.
Phys. Rev. Lett. 92, 102003 (2004)
Cited 13 times
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5.
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N. F. Sparveris et al.
Show Abstract
Quadrupole amplitudes in the γ*N→Δ transition are associated with the issue of nucleon deformation. A search for these small amplitudes has been the focus of a series of measurements undertaken at Bates/MIT by the OOPS Collaboration. We report on results from H(e,e′p)π0 data obtained at Q2=0.070 (GeV/c)2 and invariant mass of W=1155 MeV using the out-of-plane detection technique with the OOPS spectrometers. The σLT and σT+εσL response functions were isolated. These results, along with those of previous measurements at W=1172 MeV and Q2=0.127 (GeV/c)2, aim in elucidating the interplay between resonant and nonresonant amplitudes.
Phys. Rev. C 67, 058201 (2003)
Cited 5 times
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6.
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Z.-L. Zhou et al. (The MIT-Bates OOPS Collaboration)
Show Abstract
Measurements of the 2H(e→,e′p)n reaction were performed with the out-of-plane magnetic spectrometers (OOPS) at the MIT-Bates Linear Accelerator. The longitudinal-transverse, fLT and fLT′, and the transverse-transverse, fTT, interference responses at a missing momentum of 210 MeV/c were simultaneously extracted in the dip region at Q2 = 0.15 (GeV/c)2. In comparison to models of deuteron electrodisintegration, the data clearly reveal strong effects of relativity and final-state interactions and the importance of two-body meson-exchange currents and isobar configurations. We demonstrate that such effects can be disentangled by extracting these responses using the novel out-of-plane technique.
Phys. Rev. Lett. 87, 172301 (2001)
Cited 6 times
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7.
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C. Mertz et al.
Show Abstract
High-precision 1H(e,e′p)π0 measurements at Q2 = 0.126 (GeV/c)2 are reported, which allow the determination of quadrupole amplitudes in the γ*N→Δ transition; they simultaneously test the reliability of electroproduction models. The derived quadrupole-to-dipole ( I = 3/2) amplitude ratios, RSM = (-6.5±0.2stat+sys±2.5mod)% and REM = (-2.1±0.2stat+sys±2.0mod)%, are dominated by model error. Previous RSM and REM results should be reconsidered after the model uncertainties associated with the method of their extraction are taken into account.
Phys. Rev. Lett. 86, 2963 (2001)
Cited 35 times
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8.
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D. Abbott et al. (The Jefferson Lab t20 Collaboration)
Show Abstract
Tensor polarization observables ( t20, t21, and t22) have been measured in elastic electron-deuteron scattering for six values of momentum transfer between 0.66 and 1.7 (GeV/c)2. The experiment was performed at the Jefferson Laboratory in Hall C using the electron High Momentum Spectrometer, a specially designed deuteron magnetic channel and the recoil deuteron polarimeter POLDER. The new data determine to much larger Q2 the deuteron charge form factors GC and GQ. They are in good agreement with relativistic calculations and disagree with perturbative QCD predictions.
Phys. Rev. Lett. 84, 5053 (2000)
Cited 35 times
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9.
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D. T. Spayde et al. (SAMPLE Collaboration)
Show Abstract
We report a new measurement of the parity-violating asymmetry in elastic electron scattering from the proton at backward scattering angles. This asymmetry is sensitive to the strange magnetic form factor of the proton as well as electroweak axial radiative corrections. The new measurement of A = -4.92±0.61±0.73 ppm provides a significant constraint on these quantities. The implications for the strange magnetic form factor are discussed in the context of theoretical estimates for the axial corrections.
Phys. Rev. Lett. 84, 1106 (2000)
Cited 29 times
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10.
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S. M. Dolfini et al.
Show Abstract
The first measurements of fLT′, known as the fifth response function, have been made for the 2H(e→,e′p) and 12C(e→,e′p) reactions. This response is directly related to the imaginary part of the interference between the transverse and longitudinal nuclear electromagnetic currents. Its observation requires longitudinally polarized electron beams and out-of-plane detection, the latter made possible by the newly developed out-of-plane spectrometer system. The initial measurements were made by using a 560-MeV polarized electron beam and quasielastic kinematics at Q2=3.3 fm-2. The development of the methodology for out-of-plane physics, and the analysis of the data from the initial experiments are described in detail. The measured fifth response and the related asymmetry in the coincidence cross section are in agreement, albeit with large statistical errors, with the theoretical predictions. Future extensions of the out-of-plane program are also discussed.
Phys. Rev. C 60, 064622 (1999)
Cited 4 times
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11.
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B. D. Milbrath et al. (Bates FPP Collaboration)
No abstract available.
Phys. Rev. Lett. 82, 2221 (1999)
Cited 25 times
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12.
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D. Abbott et al. (The Jefferson Lab t20 Collaboration)
Show Abstract
The A(Q2) structure function in elastic electron-deuteron scattering was measured at six momentum transfers Q2 between 0.66 and 1.80 (GeV/c)2 in Hall C at Jefferson Laboratory. The scattered electrons and recoil deuterons were detected in coincidence, at a fixed deuteron angle of 60.5°. These new precise measurements resolve discrepancies between older sets of data. They put significant constraints on existing models of the deuteron electromagnetic structure, and on the strength of isoscalar meson exchange currents.
Phys. Rev. Lett. 82, 1379 (1999)
Cited 27 times
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13.
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G. A. Warren et al. (The M.I.T.-Bates, OOPS, and FPP Collaborations)
Show Abstract
We present a measurement of the induced proton polarization Pn in π0 electroproduction on the proton around the Δ resonance. The measurement was made at a central invariant mass and a squared four-momentum transfer of W=1231 MeV and Q2=0.126 GeV2/c2, respectively. We measured a large induced polarization, Pn=-0.397±0.055±0.009. The data suggest that the scalar background is larger than expected from a recent effective Hamiltonian model.
Phys. Rev. C 58, 3722 (1998)
Cited 13 times
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14.
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M. Holtrop et al.
Show Abstract
The coincidence cross section and the interference structure function, RLT, were measured for the 12C(e,e′p) 11B reaction at quasielastic kinematics and central momentum transfer of |q→|=400 MeV/c. The measurement was at an opening angle of θpq=11°, covering a range in missing energy of Em=0 to 65 MeV. The RLT structure function is found to be consistent with zero for Em>50 MeV, confirming an earlier study which indicated that RL vanishes in this region. The integrated strengths of the p- and s-shell are compared with a distorted wave impulse approximation (DWIA) calculation. The s-shell strength and shape are also compared with a Hartree Fock–random phase approximation (HF-RPA) calculation. The DWIA calculation does not succeed in giving a consistent description of both the cross section data and the extracted RLT response for either shell. The HF-RPA calculation describes the data more consistently, which may be due to the inclusion of 2-body currents in this calculation.
Phys. Rev. C 58, 3205 (1998)
Cited 3 times
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15.
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R. J. Woo et al. (Bates FPP Collaboration)
Show Abstract
The first measurements of the induced proton polarization Pn for the 12C(e,e′p→) reaction are reported. The experiment was performed at quasifree kinematics for energy and momentum transfer (ω,q)≈ (294 MeV, 756 MeV/c) and sampled a missing momentum range of 0–250 MeV/c. The induced polarization arises from final-state interactions and for these kinematics is dominated by the real part of the spin-orbit optical potential. The distorted-wave impulse approximation provides good agreement with data for the 1p3/2 shell. The data for the continuum suggest that both the 1s1/2 shell and underlying ℓ>1 configurations contribute.
Phys. Rev. Lett. 80, 456 (1998)
Cited 14 times
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16.
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B. D. Milbrath et al. (Bates FPP Collaboration)
Show Abstract
Recoil proton polarization observables were measured for both the p(e→,e′p→) and d(e→,e′p→)n reactions at two values of Q2 using a newly commissioned proton focal plane polarimeter at the MIT-Bates Linear Accelerator Center. The hydrogen and deuterium spin-dependent observables Dℓℓ and Dℓt, the induced polarization Pn, and the form factor ratio GEp/GMp were measured under identical kinematics. The deuterium and hydrogen results are in good agreement with each other and with the plane-wave impulse approximation (PWIA).
Phys. Rev. Lett. 80, 452 (1998)
Cited 38 times
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17.
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B. Mueller et al. (SAMPLE Collaboration)
Show Abstract
We report the first measurement of the parity-violating asymmetry in elastic electron scattering from the proton. The asymmetry depends on the neutral weak magnetic form factor of the proton which contains new information on the contribution of strange quark-antiquark pairs to the magnetic moment of the proton. We obtain the value GMZ = 0.34±0.09±0.04±0.05 n.m. at Q2 = 0.1 (GeV/c)2.
Phys. Rev. Lett. 78, 3824 (1997)
Cited 57 times
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18.
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D. Jordan et al.
Show Abstract
We have separated the longitudinal ( f00), transverse ( f11), and longitudinal-transverse interference ( f01) structure functions in the 2H(e,e′p)n reaction at |q→|≈400 MeV/c and ω≈110 MeV. A nonrelativistic calculation which includes effects due to final state interactions, meson exchange currents, and isobar configurations agrees with the measured f11 and f01 but overpredicts f00 by 25% ( 2σ). The data are also compared to the results of previous structure function measurements.
Phys. Rev. Lett. 76, 1579 (1996)
Cited 8 times
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19.
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C. Tripp, G. S. Adams, D. Beck, K. Dow, J. M. Finn, V. Frolov, O. Hansen, T. Kobayashi, J. McIntyre, R. Lourie, M. Nozar, S. Nagorny, J. Shaw, P. Stoler, T. Tamae, D. Tieger, W. Turchinetz, G. Warren, T. P. Welch, E. J. Winhold, M. Witkowski, and B. Wojtsekhowski
Show Abstract
The reaction 3He(e,e′d)p was measured at four-momentum transfer q = 420 MeV, for proton recoil momentum Pr = 22, 54, and 62 MeV/c, in parallel deuteron kinematics. Longitudinal (L) and transverse (T) response functions were obtained by means of Rosenbluth separations. The separated response functions are, respectively, found to be dominated by the contributions of isoscalar and isovector two-body currents. The L/T ratios are about 3.5. This is an order of magnitude lower than that for elastic scattering on a free deuteron, or what would be expected for a purely isoscalar transition, but approximately agrees with what is theoretically expected for isoscalar plus isovector contributions.
Phys. Rev. Lett. 76, 885 (1996)
Cited 2 times
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20.
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C. E. Jones et al.
Show Abstract
We present the results of a measurement of the spin-dependent asymmetry in 3→(e→,e′) inelastic scattering at kinematics on the low-energy transfer side of the quasielastic peak, including the region near the breakup threshold. Comparison with existing calculations based upon the plane wave impulse approximation shows significant deviation between the data and the model near the breakup threshold. Good agreement between data and theory is seen at higher energy transfer.
Phys. Rev. C 52, 1520 (1995)
Cited 2 times
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21.
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S. Dolfini et al.
Show Abstract
We have measured the coincidence d(e→,e′p) reaction in quasielastic scattering, detecting the proton in a noncoplanar geometry. The electron helicity asymmetry Ae and the imaginary part of the longitudinal-transverse interference structure function fLT′ have been determined at a four-momentum transfer Q2=3.3 fm-2. The results are compared with theoretical calculations which use realistic potentials for the NN interaction.
Phys. Rev. C 51, 3479 (1995)
Cited 3 times
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22.
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H. Gao et al.
Show Abstract
We report a measurement of the asymmetry in spin-dependent quasielastic scattering of longitudinally polarized electrons from a polarized 3He target. The neutron magnetic form factor GMn has been extracted from the measured asymmetry based on recent PWIA calculations using spin-dependent spectral functions. Our determination of GMn at Q2=0.19 (GeV/c)2 agrees with the dipole parametrization. This experiment represents the first measurement of the neutron magnetic form factor using spin-dependent electron scattering.
Phys. Rev. C 50, R546 (1994)
Cited 29 times
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23.
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J. Mandeville et al.
Show Abstract
We have measured a new electron scattering observable, the “fifth” structure function, f01′, which is the imaginary part of the transverse-longitudinal interference response. Its observation requires a longitudinally polarized beam and coincident, out-of-plane particle detection. f01′ arises from interference between reaction channels and provides an additional means for their disentanglement. In the quasielastic C12(e→,e′p) measurements reported here, f01′ is driven by the interference of the direct knockout and rescattering amplitudes.
Phys. Rev. Lett. 72, 3325 (1994)
Cited 10 times
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24.
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M. Garçon et al.
Show Abstract
The tensor polarization of the recoil deuteron in elastic electron-deuteron scattering has been measured at the Bates Linear Accelerator Center at three values of four-momentum transfer Q=3.78, 4.22, and 4.62 fm-1, corresponding to incident electron energies of 653, 755, and 853 MeV. The scattered electrons and the recoil deuterons were detected in coincidence. The recoil deuterons were transported to a liquid hydrogen target to undergo a second scattering. The angular distribution of the d→-p scattering was measured using a polarimeter. The polarimeter was calibrated in an auxiliary experiment using a polarized deuteron beam at the Laboratoire National Saturne. A Monte Carlo procedure was used to generate interpolated calibration data because the energy spread in the deuteron energies in the Bates experiment spanned the range of deuteron energies in the calibration experiment. The extracted values of t20 are compared to predictions of different theoretical models of the electromagnetic form factors of the deuteron: nonrelativistic and relativistic nucleon-meson dynamics, Skyrme model, quark models, and perturbative quantum chromodynamics. Along with the world data the structure functions A(Q) and B(Q) are used to separate the charge monopole and charge quadrupole form factors of the deuteron. A node in the charge monopole form factor is observed at Q=4.39±0.16 fm-1.
Phys. Rev. C 49, 2516 (1994)
Cited 25 times
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25.
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G. A. Retzlaff et al.
Show Abstract
Inclusive inelastic electron scattering cross sections for 3H and 3He were measured for excitation energies below 18 MeV. Longitudinal and transverse response functions were determined from these cross sections for six values of the three-momentum transfer q in the range 0.88 <q<2.87 fm-1. A previously observed C0 multipole enhancement near threshold in the two-body channel for 3He is confirmed but is not observed for 3H. The experimental data are found to be in good agreement with two recent calculations of the longitudinal and transverse response functions. The first uses variational ground-state wave functions and the orthogonal correlated states method to describe the two- and three-body breakup channels. The second uses bound and continuum Faddeev wave functions obtained for a simple central potential. Agreement with the data is good for the first model and better for the second. The inclusion of final-state interactions (FSI) in the Faddeev continuum is found to be very important in these threshold breakup kinematics; in many cases inclusion of FSI changes the response functions by factors of two or three giving excellent agreement with the data. The transverse response functions are well reproduced, even though neither model includes meson exchange currents. Ratios of the response functions for the two nuclei are also well described.
Phys. Rev. C 49, 1263 (1994)
Cited 7 times
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