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2024年10月30日

Analysis of Three Annihilation Potential andp+ 12C Inelastic Scattering

  • The inelastic scattering of antiproton (plab=600MeV/c) by 12C leading to the excitation of the three normal parity T=0 levels is studied in the framework of Glauber model. The transition densities obtained from fitting to the electron scattering data and the three annihilation potentials derived from analysis of pp scattering data are used in the calculation. The inelastic angular distribution for exciting the three lowest normal parity T=0 states in 12C at 4.44MeV(Jπ=2+), 7.66MeV(Jπ=0+), and 9.63MeV(Jπ=3-) by 600MeV/c antiproton are calculated by selecting potential parameter suitably. The results are seen to be in fairly good agreement with the available experimental data. The results are given by using the elementary two-body amplitudes comparatively.
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GU Yun-Ting, PENG Ji-Zhu, FENG Lu-Yan, LU Lian-Zhong, TAN Zhen-Qiang and MA Wei-Xing. Analysis of Three Annihilation Potential andp+ 12C Inelastic Scattering[J]. Chinese Physics C, 2004, 28(1): 69-72.
GU Yun-Ting, PENG Ji-Zhu, FENG Lu-Yan, LU Lian-Zhong, TAN Zhen-Qiang and MA Wei-Xing. Analysis of Three Annihilation Potential andp+ 12C Inelastic Scattering[J]. Chinese Physics C, 2004, 28(1): 69-72. shu
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Received: 2003-03-27
Revised: 1900-01-01
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Analysis of Three Annihilation Potential andp+ 12C Inelastic Scattering

    Corresponding author: GU Yun-Ting,
  • Department of Physics,Guangxi University,Nanning 530004,China2 Institute of High Energy Physics,The Chinese Academy of Sciences,Beijing 100039,China

Abstract: The inelastic scattering of antiproton (plab=600MeV/c) by 12C leading to the excitation of the three normal parity T=0 levels is studied in the framework of Glauber model. The transition densities obtained from fitting to the electron scattering data and the three annihilation potentials derived from analysis of pp scattering data are used in the calculation. The inelastic angular distribution for exciting the three lowest normal parity T=0 states in 12C at 4.44MeV(Jπ=2+), 7.66MeV(Jπ=0+), and 9.63MeV(Jπ=3-) by 600MeV/c antiproton are calculated by selecting potential parameter suitably. The results are seen to be in fairly good agreement with the available experimental data. The results are given by using the elementary two-body amplitudes comparatively.

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