A Study of Reaction Mechanism in Intermediate Energy Proton-Nucleus Collisions

  • The reaction mechanism in p+56Fe collisions with EP=200, 585 and 1000MeV is investigated by Quatum Molecular Dynamics model. The spectra of emitted nucleons, double differential cross sections of emitted neutrons and time evolution of mass distribution of residual fragments are calculated and reasonable results obtained.
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  • [1] Lu Zhaoqi,Zhang Xiaoze and Sa Benkao,Chinese Phys.Lett.,5(1988)13.[2]卢兆启等,高能物理与核物理,12(1989)75.[3]C.Hartnack,Li Zhuxia and L.Neise et al.,Nucl.Phys.,A495(1989)303;J.Aichlin,Phys.Rep,202(1991)233;A.Ono,H.Hriucki,T.Maruyama and A.Ohniski:Prog.Theor.Phys,87(1992)1185.[4]S.Cierjacke and Y.Hino et al,Phys.Rev,C36(1987)1976.[5]D.Filges and P.Cloth et al,Phys.Rev,C36(1987)1988.
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Lu Zhaoqi and Li Zhuxia. A Study of Reaction Mechanism in Intermediate Energy Proton-Nucleus Collisions[J]. Chinese Physics C, 1994, 18(7): 647-651.
Lu Zhaoqi and Li Zhuxia. A Study of Reaction Mechanism in Intermediate Energy Proton-Nucleus Collisions[J]. Chinese Physics C, 1994, 18(7): 647-651. shu
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Received: 1900-01-01
Revised: 1900-01-01
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A Study of Reaction Mechanism in Intermediate Energy Proton-Nucleus Collisions

    Corresponding author: Lu Zhaoqi,
  • China Institute of Atomic Energy, Beijing 102413

Abstract: The reaction mechanism in p+56Fe collisions with EP=200, 585 and 1000MeV is investigated by Quatum Molecular Dynamics model. The spectra of emitted nucleons, double differential cross sections of emitted neutrons and time evolution of mass distribution of residual fragments are calculated and reasonable results obtained.

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