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《中国物理C》(英文)编辑部
2024年10月30日

Excitation Energy and Temperature of Compound Nuclei in the Reaction of 35MeV/u 40Ar+197Au

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DUAN Li-Min, WU He-Yu, JIN Gen-Ming, WANG Su-Fang, LI Zu-Yu, WEI Zhi-Yong, ZHANG Bao-Guo, WANG Hong-Wei, XIAO Zhi-Gang, LIU Yong-Ying, HU Pei-Gang, LU Zhao-Hui, TIAN Wen-Dong and GOU Quan-Bu. Excitation Energy and Temperature of Compound Nuclei in the Reaction of 35MeV/u 40Ar+197Au[J]. Chinese Physics C, 2003, 27(2): 118-123.
DUAN Li-Min, WU He-Yu, JIN Gen-Ming, WANG Su-Fang, LI Zu-Yu, WEI Zhi-Yong, ZHANG Bao-Guo, WANG Hong-Wei, XIAO Zhi-Gang, LIU Yong-Ying, HU Pei-Gang, LU Zhao-Hui, TIAN Wen-Dong and GOU Quan-Bu. Excitation Energy and Temperature of Compound Nuclei in the Reaction of 35MeV/u 40Ar+197Au[J]. Chinese Physics C, 2003, 27(2): 118-123. shu
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Received: 2002-03-11
Revised: 1900-01-01
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Excitation Energy and Temperature of Compound Nuclei in the Reaction of 35MeV/u 40Ar+197Au

    Corresponding author: DUAN Li-Min,
  • Institute of Modern Physics,The Chinese Academy of Science,Lanzhou 730000,China

Abstract: The fission fragments in the reaction of 40Ar+197Au have been measured coincidently with light charged particles at 35MeV/u by using large area position sensitive detectors and Si-detectors. The velocities of the fissioning compounds are deduced based on the fragments and the excitation energies of the compounds calculated with a hypothesis of massive transfer and taking into account the influence of pre-equilibrium emission of light particles. As the same time,the temperatures of the compounds are extracted by using the energy spectra of the backward light charged particles measured coincidently with fission fragments. The temperature-excitation energy curve does not present the behaviour predicted by the theories.

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