RELATIVISTIC STUDY OF PROTON-NUCLEUS ELASTIC SCATTERING AT LOWER ENERGIES

  • The Lorentz invariant relativistic optical potential have been discussed at energies below 300MeV.The Dirac equation with scalar and vector potential is solved by exact partial wave method.The calculated results of proton 40Ca at energy region 300—65MeV are presented and compared with the experimental data of differential cross section dσ/dΩ,analyzing power Ay(θ) and spin rotation function Q(θ).It is shown that the impoved relativistic optical potential fits the data well.
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  • [1] M. R. Anastasio, L. S. CeIenza, W. S. Pong and Shakin, Phys. Reporz, 100(1983), 327.[2] J. A. MeNeil, J. Shepard and S. J. Wallace, Phys. Rev, Lett, 50(1983), 1439, 1443.邱锡钧等,中国科学,A(1986),378及其引文.邱锡钧等,中国科学,A(1986),378及其引文.[3] B. C. Clark et al,Phys. Lett., 1228(1983), 211; Phys. Rev, Lett., 50(1983), 1644 and Private communma-tion; E. Rose et al,Phys. Rev., C35(1987), 2236; B. Aas et al,Phyr. Rev., C32(1985), 231.[4] 刘渊、李扬国,高能物理与核物理,11(1987),68. 李扬国,高能物理与核物理,11(1987),208.[5] B. C. Clark, et al,Phys. Rev., C28(1983), 1421.M. V. Hynes,et al,Phys. Rev. Lett., 52(1984), 978;A. M. Kobos, et al.Nucl. Phys., A445(1985),605.A. M. Kobos, et al.Nucl. Phys., A445(1985), 605.[6] A.J.Tion and S. J.Wallace, Phys. Rev., C32(J985), 267;[7] J. D. Bjorken and S. D. Drell,Relativistic Quantum Mechanies (New York 1964).[8] M.V. Hynes, et al,Phys. Rev,C31(1985), 1438.[9] L. G. Arnold et al.. Phys. Rev., C23(1981), 1949.E. Stevenson, Proceedings of 'Dirac Approaches to Nuclear Physics' Los Alamos (1985).H. Sakaguchi et al., J. Phys. Scc. Jpn. Suppl., 55(1986), 51 and private commmcacon.[10] 马中玉等,高能物理与核物理,待发表.
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LI Yang-Guo. RELATIVISTIC STUDY OF PROTON-NUCLEUS ELASTIC SCATTERING AT LOWER ENERGIES[J]. Chinese Physics C, 1989, 13(2): 148-155.
LI Yang-Guo. RELATIVISTIC STUDY OF PROTON-NUCLEUS ELASTIC SCATTERING AT LOWER ENERGIES[J]. Chinese Physics C, 1989, 13(2): 148-155. shu
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Received: 1900-01-01
Revised: 1900-01-01
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RELATIVISTIC STUDY OF PROTON-NUCLEUS ELASTIC SCATTERING AT LOWER ENERGIES

    Corresponding author: LI Yang-Guo,
  • Shantou University,Guang Dong

Abstract: The Lorentz invariant relativistic optical potential have been discussed at energies below 300MeV.The Dirac equation with scalar and vector potential is solved by exact partial wave method.The calculated results of proton 40Ca at energy region 300—65MeV are presented and compared with the experimental data of differential cross section dσ/dΩ,analyzing power Ay(θ) and spin rotation function Q(θ).It is shown that the impoved relativistic optical potential fits the data well.

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