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Featured researches published by J. Cha.


Physical Review Letters | 1998

Measurements of Deuteron Photodisintegration up to 4.0 GeV

C. Bochna; B. Terburg; D. Abbott; Abdellah Ahmidouch; C. S. Armstrong; J. Arrington; K. A. Assamagan; Oliver Keith Baker; S. Barrow; D. Beatty; D. Beck; S. Beedoe; E. J. Beise; J. E. Belz; P. Bosted; E. J. Brash; H. Breuer; R. V. Cadman; L. Cardman; R. Carlini; J. Cha; N. S. Chant; C. Cothran; W. J. Cummings; S. Danagoulian; F. Duncan; James Dunne; D. Dutta; T. Eden; R. Ent

The first measurements of the differential cross section for the d(γ,p)n reaction up to 4.0 GeV were performed at the Continuous Electron Beam Accelerator Facility (CEBAF) at Thomas Jefferson Laboratory. We report the cross sections at the proton center-of-mass angles of 36°, 52°, 69°, and 89°. These results are in reasonable agreement with previous measurements at lower energy. The 89° and 69° data show constituent-counting-rule behavior up to 4.0 GeV photon energy. The 52° and 36° data disagree with the counting-rule behavior. The quantum chromodynamics (QCD) model of nuclear reactions involving reduced amplitudes disagrees with the present data.


Physical Review C | 2006

Proton G_E/G_M from beam-target asymmetry

M. K. Jones; A. Aghalaryan; Abdellah Ahmidouch; R. Asaturyan; F. Bloch; Werner U. Boeglin; P. Bosted; C. Carasco; R. Carlini; J. Cha; J. P. Chen; M. E. Christy; L. Cole; Luminita Coman; D. Crabb; S. Danagoulian; D. Day; James Dunne; M. Elaasar; R. Ent; H. Fenker; E. Frlez; D. Gaskell; L. Gan; J. Gomez; Bitao Hu; J. Jourdan; Christopher Douglas Keith; Cynthia Keppel; Mahbubul Khandaker

The ratio of the protons electric to magnetic form factor, G{sub E}/G{sub M}, can be extracted in elastic electron-proton scattering by measuring cross sections, beam-target asymmetry, or recoil polarization. Separate determinations of G{sub E}/G{sub M} by cross sections and recoil polarization observables disagree for Q{sup 2}>1 (GeV/c){sup 2}. Measurement by a third technique might uncover an unknown systematic error in either of the previous measurements. The beam-target asymmetry has been measured for elastic electron-proton scattering at Q{sup 2} = 1.51 (GeV/c){sup 2} for target spin orientation aligned perpendicular to the beam momentum direction. This is the largest Q{sup 2} at which G{sub E}/G{sub M} has been determined by a beam-target asymmetry experiment. The result, {mu}G{sub E}/G{sub M}=0.884{+-}0.027{+-}0.029, is compared to previous world data.


Physical Review Letters | 2007

Proton Spin Structure in the Resonance Region

F. R. Wesselmann; K. Slifer; S. Tajima; A. Aghalaryan; A. Ahmidouch; R. Asaturyan; F. Bloch; W. Boeglin; P. Bosted; C. Carasco; R. Carlini; J. Cha; J. P. Chen; M. E. Christy; L. Cole; L. Coman; D. Crabb; S. Danagoulian; D. Day; J. Dunne; M. Elaasar; R. Ent; H. Fenker; E. Frlez; L. Gan; D. Gaskell; Jonatan Piedra Gomez; B. Hu; M. K. Jones; J. Jourdan

We have examined the spin structure of the proton in the region of the nucleon resonances (1.085 GeV<W<1.910 GeV) at an average four momentum transfer of Q2=1.3 GeV2. Using the Jefferson Lab polarized electron beam, a spectrometer, and a polarized solid target, we measured the asymmetries A|| and A(perpendicular) to high precision, and extracted the asymmetries A1 and A2, and the spin structure functions g1 and g2. We found a notably nonzero A(perpendicular), significant contributions from higher-twist effects, and only weak support for polarized quark-hadron duality.


Physical Review Letters | 2010

Probing Quark-Gluon Interactions with Transverse Polarized Scattering

K. Slifer; O. Rondon; A. Aghalaryan; A. Ahmidouch; R. Asaturyan; F. Bloch; W. Boeglin; P. Bosted; C. Carasco; R. Carlini; J. Cha; J. P. Chen; M. E. Christy; L. Cole; L. Coman; D. Crabb; S. Danagoulian; D. Day; J. Dunne; M. Elaasar; R. Ent; H. Fenker; E. Frlez; D. Gaskell; L. Gan; Jonatan Piedra Gomez; B. Hu; J. Jourdan; M. K. Jones; C. Keith

We have extracted QCD matrix elements from our data on doubly polarized inelastic scattering of electrons on nuclei. We find the higher twist matrix element d˜2, which arises strictly from quark-gluon interactions, to be unambiguously nonzero. The data also reveal an isospin dependence of higher twist effects if we assume that the Burkhardt-Cottingham sum rule is valid. The fundamental Bjorken sum rule obtained from the a0 matrix element is satisfied at our low momentum transfer.


Nuclear Physics | 2001

Electroproduction of kaons on light nuclei

B. Zeidman; D. Abbott; A. Ahmidouch; P. Ambrozewicz; C. S. Armstrong; J. Arrington; R. Asaturyan; K. Assamagan; S. Avery; K. Bailey; Oliver Keith Baker; S. Beedoe; H. Bitao; H. Breuer; D. Brown; R. Carlini; J. Cha; N. S. Chant; E. Christy; A. Cochran; L. Cole; C. Cothran; J. Crowder; W.J. Cummings; S. Danagoulian; F. Dohrmann; F. Duncan; J. Dunne; D. Dutta; T. Eden

The A(e,e{prime}K{sup +})YX reaction on H, D, {sup 3}He, and {sup 4}He was investigated in Hall C at CEBAF. Data were obtained for Q{sup 2} {approx} 0.35 and 0.5 GeV{sup 2} at 3.245 GeV. The missing mass spectra for both H and D are fitted with Monte-Carlo simulations incorporating peaks corresponding to {Lambda} production on the proton and {Sigma} production on both the proton and neutron. For D, the cross section ratio {Sigma}{sup 0}/{Sigma}{sup {minus}} {approx} 2, and excess yield close to the thresholds for {Lambda} and {Sigma} production can be attributed to final-state interactions that are compared to the data. The analysis of the data for the He targets is in a more preliminary state with broader quasi-free peaks resulting from the higher Fermi momenta. Evidence for bound {Lambda}-hypernuclear states is seen and other structure may be present.


8th International Conference on Mesons and Light Nuclei, Prague (CZ), 07/2001 | 2001

First Experiment on Spectroscopy of Lambda-Hypernuclei by Electroproduction at Jlab

L. Tang; T. Miyoshi; M. Sarsour; L. Yuan; X. Zhu; A. Ahmidouch; P. Ambrozewicz; D. Androic; T. Angelescu; R. Asaturyan; S. Avery; Oliver Keith Baker; I. Bertovic; H. Breuer; R. Carlini; J. Cha; R. Chrien; M. E. Christy; L. Cole; S. Danagoulian; D. Dehnhard; M. Elaasar; A. Empl; R. Ent; H. Fenker; Y. Fujii; M. Furic; L. Gan; K. Garrow; A. Gasparian

The first experiment in Lambda-hypernuclear spectroscopy using the high precision electron beam at Jefferson laboratory (Jlab) has been carried out. The hypernuclear spectrometer system (HNSS) was used to measure spectra from the {sup 12}C(e, e{prime}K{sup +}){sup 12}{sub {Lambda}}B reaction with sub-1 MeV resolution, the best energy resolution obtained thus far in hypernuclear spectroscopy with magnetic spectrometers. This paper describes the HNSS and the preliminary results for the {sup 12}{sub {Lambda}}B system. The experimental spectrum is consistent with the expected strong spin-flip excitations of unnatural parity states. A program of hypernuclear physics experiments is planned for the future with much higher yield and even better energy resolution.


Physical Review C | 2007

QuasifreeΛ,Σ0, andΣ−electroproduction fromH1,2,He3,4, and carbon

F. Dohrmann; A. Ahmidouch; C. S. Armstrong; J. Arrington; R. Asaturyan; S. Avery; K. Bailey; H. Bitao; H. Breuer; D. S. Brown; R. Carlini; J. Cha; N. S. Chant; E. Christy; A. Cochran; L. Cole; J. Crowder; S. Danagoulian; M. Elaasar; R. Ent; H. Fenker; Y. Fujii; L. Gan; K. Garrow; D. F. Geesaman; P. Gueye; K. Hafidi; W. Hinton; H. G. Juengst; C. Keppel

Kaon electroproduction from light nuclei and hydrogen, using 1H, 2H, 3He, 4He, and Carbon targets has been measured at Jefferson Laboratory. The quasifree angular distributions of Lambda and Sigma hyperons were determined at Q^2= 0.35(GeV/c)^2 and W= 1.91GeV. Electroproduction on hydrogen was measured at the same kinematics for reference.


Physical Review C | 2007

Quasifree Lambda, Sigma^0, and Sigma^- electroproduction from 1,2H, 3,4He, and Carbon

F. Dohrmann; A. Ahmidouch; C. S. Armstrong; J. Arrington; R. Asaturyan; S. Avery; K. Bailey; H. Bitao; H. Breuer; D. S. Brown; R. Carlini; J. Cha; N. S. Chant; E. Christy; A. Cochran; L. Cole; J. Crowder; S. Danagoulian; M. Elaasar; R. Ent; H. Fenker; Y. Fujii; L. Gan; K. Garrow; D. F. Geesaman; P. Gueye; K. Hafidi; W. Hinton; H. G. Juengst; C. Keppel

Kaon electroproduction from light nuclei and hydrogen, using 1H, 2H, 3He, 4He, and Carbon targets has been measured at Jefferson Laboratory. The quasifree angular distributions of Lambda and Sigma hyperons were determined at Q^2= 0.35(GeV/c)^2 and W= 1.91GeV. Electroproduction on hydrogen was measured at the same kinematics for reference.


Physical Review C | 2007

Quasifree Lambda, Sigma0, and Sigma- electroproduction from H-1, H-2, He-3, He-4 and carbon

F. Dohrmann; M. Zeier; R. E. Segel; H. Breuer; I. Niculescu; H. Mkrtchyan; J. Arrington; John C. Mitchell; E. Christy; D. H. Potterveld; C. Keppel; K. Hafidi; G. Niculescu; Andrei Yu Semenov; D. S. Brown; L. Gan; B. A. Raue; P. Reimer; R. Ent; M. Elaasar; J. Roche; V. Tadevosyan; C. S. Armstrong; P. Markowitz; D. F. Geesaman; S. Tajima; C. Yan; L. Cole; H. Bitao; J. Reinhold

Kaon electroproduction from light nuclei and hydrogen, using 1H, 2H, 3He, 4He, and Carbon targets has been measured at Jefferson Laboratory. The quasifree angular distributions of Lambda and Sigma hyperons were determined at Q^2= 0.35(GeV/c)^2 and W= 1.91GeV. Electroproduction on hydrogen was measured at the same kinematics for reference.


Archive | 2005

Electroproduction of strangeness on (Lambda)H-3,4 bound states on helium

F. Dohrmann; D. Abbott; A. Ahmidouch; P. Ambrozewicz; C. S. Armstrong; J. Arrington; R. Asaturyan; K. Assamagan; S. Avery; K. Bailey; S. Beedoe; H. Bitao; H. Breuer; D. S. Brown; R. Carlini; J. Cha; N. S. Chant; E. Christy; A. Cochran; L. Cole; C. Cothran; J. Crowder; W.J. Cummings; S. Danagoulian; F. Duncan; J. Dunne; D. Dutta; T. Eden; M. Elaasar; R. Ent

The A(e,e′K+)X reaction has been investigated at Jefferson Laboratory. Data were taken for Q2 ≈ 0.35 GeV2 at a beam energy of 3.245 GeV for 1H,3He and 4He targets. Evidence for Λ‐hypernuclear bound states is seen for 3,4He targets. This is the first time that the electroproduction of these hypernuclei has been observed.

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R. Ent

Thomas Jefferson National Accelerator Facility

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R. Carlini

Thomas Jefferson National Accelerator Facility

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J. Arrington

Argonne National Laboratory

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C. S. Armstrong

Thomas Jefferson National Accelerator Facility

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D. Dutta

Mississippi State University

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K. Bailey

Argonne National Laboratory

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K. Assamagan

Brookhaven National Laboratory

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