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Featured researches published by L. Clogher.


Physics Letters B | 1989

Measurement of the proton elastic form factors for Q2=1−3(Gev/c)2☆

R.C. Walker; B. W. Filippone; J. Jourdan; R. Milner; R. D. McKeown; D. Potterveld; R.G. Arnold; D. Benton; P. Bosted; G. deChambrier; L. Clogher; A. Lung; S. E. Rock; Z. M. Szalata; A. Para; F. S. Dietrich; K. van Bibber; J. Button-Shafer; B. Debebe; R. S. Hicks; S. Dasu; P. de Barbaro; A. Bodek; H. Harada; M.W. Krasny; K. Lang; E.M. Riordan; J. Alster; R. Gearhart; L.W. Whitlow

We report measurements of the proton form factors, G^p_E and G^p_M, extracted from elastic electron scattering in the range 1 ≤ Q^2 ≤ 3 (GeV/c)^2 with uncertainties of <15% in G^p_E and <3% in G^p_M. The results for G^p_E are somewhat larger than indicated by most theoretical parameterizations. The ratio of Pauli and Dirac form factors, Q^2(F^p_2/F^p_1), is lower in value and demonstrates less Q^2 dependence than these parameterizations have indicated. Comparisons are made to theoretical models, including those based on perturbative QCD, vector-meson dominance, QCD sum rules, and diquark constituents to the proton. A global extraction of the form factors, including previous elastic scattering measurements, is also presented.


Nuclear Physics B - Proceedings Supplements | 1989

Precision measurement of R=σL/σT and F2 in deep inelastic electron scattering

A. Bodek; S. Dasu; R.C. Walker; L.W. Whitlow; J. Alster; R.G. Arnold; P. de Barbaro; P. Bosted; D. Benton; J. Button-Shafer; G. deChambrier; L. Clogher; B. Debebe; F. S. Dietrich; B. W. Filippone; R. Gearhart; H. Harada; R. S. Hicks; J. Jourdan; M.W. Krasny; K. Lang; A. Lung; R. Milner; R. Mckeown; A. Para; D. Potterveld; E.M. Riordan; S. E. Rock; Z. M. Szalata; K. van Bibber

Abstract We report new results on a precision measurement of the ratio R= σ L / σ T , and the structure function F 2 , for deep inelastic electron-nucleon scattering in the range 0.2≤×≤0.5 and 1≤Q 2 ≤10 (GeV/c) 2 . Our results show, for the first time, a clear falloff of R with increasing Q 2 . Our R and F 2 results are in good agreement with QCD predictions only when corrections for target mass effects are included.


Archive | 1989

Measurement of R = σL/σT and F2 on Deuterium and Iron in Deep Inelastic Electron Scattering

S. E. Rock; S. Dasu; R.C. Walker; L.W. Whitlow; J. Alster; R.G. Arnold; P. de Barbaro; D. Benton; A. Bodek; P. Bosted; J. Button-Shafer; G. deChambrier; L. Clogher; B. Debebe; F. S. Dietrich; B. W. Filippone; R. Gearhart; H. Harada; R. S. Hicks; J. Jourdan; M.W. Krasny; K. Lang; A. Lung; R. Milner; R. D. McKeown; A. Para; D. Potterveld; E.M. Riordan; Z. M. Szalata; K. van Bibber

We report new results on a precision measurement of the ratio R = σ L /σ T from deuterium, iron and gold targets, on the ratio σFe/σ D and on the structure function F 2, for deep inelastic electron-nucleus scattering in the range 0.2 < x < 0.5 and 1 ≤ Q 2 ≤ 10(GeV/c)2. We find no difference between R Fe and R d. Our results show, for first time, a clear falloff of R with increasing Q 2 at SLAC energies. Our R and F 2 results are in good agreement with QCD predictions only when corrections for target mass effects are included.


Nuclear Physics | 1988

A study of the nuclear and kinematic dependence of R = σL/σT in deep inelastic electron scattering☆

S. Dasu; P. de Barbaro; R.C. Walker; L.W. Whitlow; J. Alster; R.G. Arnold; P. Bosted; D. Benton; A. Bodek; J. Button-Shafer; G. De Chambrier; L. Clogher; B. Debfbe; F. S. Dietrich; B. W. Filippone; R. Gearhart; H. Harada; R. S. Hicks; J. Jourdan; M.W. Krasny; K. Lang; A. Lung; R. Milner; R. Mckeown; A. Para; D. Potterveld; E.M. Riordan; S. E. Rock; Z. M. Szalata; K. Van Bibber

Abstract We report preliminary results on the nuclear dependence of R = σL/σT in the deep inelastic electron scattering from deuterium, iron, and gold nuclei. In the x, Q2 range of 0.2 ⩽ x ⩽ 0.5 and 1 ⩽ Q2 ⩽ 5 (GeV/c)2, the average RFe − RD is 0.03 ± 0.02 (stat) ± 0.06 (syst); the final systematic errors are expected to be reduced to ± 0.03. The results indicate that there are no significant spin-0 constituents or higher twist effects in nuclei as compared to free nucleons. Models for the EMC effect with significant nuclear dependence of R are ruled out. The discrepancy, at low x, between CERN and SLAC results for the cross section ratio σFe/σD cannot be attributed to a nuclear dependence of R as suggested by some authors. The kinematic variation of RD with x and Q2 in the SLAC energy is in agreement with the predictions of QCD with the addition of target mass effects.


3rd Conference on the Intersections Between Particle and Nuclear Physics | 1988

Precision measurement of R=σL/σT and F2 in deep inelastic electron scattering on deuterium and iron targets

P. Bosted; S. Dasu; R.C. Walker; L.W. Whitlow; J. Alster; R.G. Arnold; P. de Barbaro; D. Benton; A. Bodek; J. Button-Shafer; G. deChambrier; L. Clogher; B. Debebe; F. S. Dietrich; B. W. Filippone; R. Gearhart; H. Harada; R. S. Hicks; J. Jourdan; M.W. Krasny; K. Lang; A. Lung; R. Milner; R. D. McKeown; A. Para; D. Potterveld; E.M. Riordan; S. E. Rock; Z. M. Szalata; K. van Bibber

We report new results on a precision measurement of the ratio R=σL/σT from deuterium, iron and gold targets, on the ratio σFe/σD and on the structure function F2, for deep inelastic electron‐nucleus scattering in the range 0.2≤x≤0.5 and 1≤Q2≤10(GeV/c)2. We find no difference between RFe and Rd. Our results show, for first time, a clear falloff of R with increasing Q2 at SLAC energies. Our R and F2 results are in good agreement with QCD predictions only when corrections for target mass effects are included.


3rd Conference on the Intersections Between Particle and Nuclear Physics | 1988

Transverse inelastic electron scattering from the deuteron at high momentum transfers

P. Bosted; R.G. Arnold; D. Benton; L. Clogher; G. deChambrier; A.T. Katramatou; J. Lambert; A. Lung; G.G. Petratos; A. Rahbar; S. E. Rock; Z. M. Szalata; B. Debebe; M. Frodyma; R. S. Hicks; A. Hotta; G. A. Peterson; R. Gearhart; J. Alster; J. Lichtenstadt; F. S. Dietrich; K. van Bibber

Cross sections for 180° inelastic electron scattering from the deuteron were measured from the break‐up threshold to beyond the quasielastic peak for incident beam energies between 0.7 and 1.3 GeV, corresponding to 0.75≤Q2≤2.75 (GeV/c)2. The data are in reasonable agreement with nonrelativistic models that include final‐state interactions are meson exchange currents.


Physical Review Letters | 1987

Search for short-lived axions in an electron-beam-dump experiment

E.M. Riordan; M.W. Krasny; K. Lang; P. de Barbaro; A. Bodek; S. Dasu; N. Varelas; Xiangrong Wang; R.G. Arnold; D. Benton; P. Bosted; L. Clogher; A. Lung; Stephen Rock; Z. M. Szalata; B. W. Filippone; R.C. Walker; J.D. Bjorken; M. Crisler; A. Para; J. Lambert; J. Button-Shafer; B. Debebe; M. Frodyma; R. S. Hicks; G. A. Peterson; R. Gearhart


Physical Review Letters | 1987

Measurements of deuteron magnetic form factor high momentum transfer.

R.G. Arnold; D. Benton; P. Bosted; L. Clogher; G. deChambrier; A.T. Katramatou; J. Lambert; A. Lung; G.G. Petratos; A. Rahbar; S. E. Rock; Z. M. Szalata; R. Gearhart; B. Debebe; M. Frodyma; R. S. Hicks; A. Hotta; G. A. Peterson; J. Alster; J. Lichtenstadt; Frank S. Dietrich; K. van Bibber


Physical Review Letters | 1988

Precision Measurement of R =

S. Dasu; R.G. Arnold; K. Lang; F. S. Dietrich; B. W. Filippone; R. Gearhart; D. H. Potterveld; A. Bodek; J. Jourdan; P. Bosted; R. S. Hicks; G. De Chambrier; P. de Barbaro; S. E. Rock; Z. M. Szalata; J. Button-Shafer; E.M. Riordan; A. Lung; D. Benton; A. Para; R. Milner; J. Alster; L. Clogher; L.W. Whitlow; M.W. Krasny; H. Harada; R. McKeown; K. van Bibber; B. Debebe; R.C. Walker


Physical Review C | 1990

\sigma^-

P. Bosted; A.T. Katramatou; R.G. Arnold; D. Benton; L. Clogher; G. deChambrier; J. Lambert; A. Lung; G.G. Petratos; A. Rahbar; S. E. Rock; Z. M. Szalata; B. Debebe; M. Frodyma; R. S. Hicks; A. Hotta; G. A. Peterson; R. Gearhart; J. Alster; J. Lichtenstadt; F. S. Dietrich; K. van Bibber

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P. Bosted

Thomas Jefferson National Accelerator Facility

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R. S. Hicks

University of Massachusetts Amherst

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A. Lung

California Institute of Technology

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B. Debebe

University of Massachusetts Amherst

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F. S. Dietrich

Lawrence Livermore National Laboratory

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