Rotation and Decay of the Dinuclear System Formed in Dissipative Reaction of 19F+27Al

  • Excitation functions of the reaction products B,C,N,O,F and Ne in the dissipative heavy ion collision of 19F+27Al have been measured at incident energies from 110.25MeV to 118.75MeV in step of 250keV. The energy coherent widths Γ of the products are extracted by using the energy autocorrelation functions. Taking into account the properties of both the rotation and decay in an intermediate dinuclear system formed in the reaction, the Ericson statistical theory in nuclear reaction has been developed and the evolution process of the dinuclear system is discussed.
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HAN Jian-Long, WANG Qi, DONG Yu-Chuan, LI Song-Lin, DUAN Li-Min, WU He-Yu, XU Hua-Gen, CHEN Ruo-Fu, XU Hu-Shan, BAI Zhen, LI Zhi-Chang, LU Xiu-Qin, ZHAO Kui, Rotation and Decay of the Dinuclear System Formed in Dissipative Reaction of 19F+27Al[J]. Chinese Physics C, 2005, 29(12): 1142-1145.
HAN Jian-Long, WANG Qi, DONG Yu-Chuan, LI Song-Lin, DUAN Li-Min, WU He-Yu, XU Hua-Gen, CHEN Ruo-Fu, XU Hu-Shan, BAI Zhen, LI Zhi-Chang, LU Xiu-Qin, ZHAO Kui, Rotation and Decay of the Dinuclear System Formed in Dissipative Reaction of 19F+27Al[J]. Chinese Physics C, 2005, 29(12): 1142-1145. shu
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Received: 2005-03-24
Revised: 1900-01-01
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Rotation and Decay of the Dinuclear System Formed in Dissipative Reaction of 19F+27Al

    Corresponding author: WANG Qi,
  • Institute of Modern Physics,Chinese Academy of Sciences,Lanzhou 730000,China2 Graduate University of Chinese Academy of Sciences,Beijing 100049,China3 China Institute of Atomic Energy,Beijing 102413,China4 Centro de Ciencias Fisicas,Campus Morelos UNAM,Cuernavaca,Morales,Mexico5 Nonlinear Physics Group and Department of Theoretical Physics,RSPhysSE,ANU,Canberra,ACT 0200,Australia

Abstract: Excitation functions of the reaction products B,C,N,O,F and Ne in the dissipative heavy ion collision of 19F+27Al have been measured at incident energies from 110.25MeV to 118.75MeV in step of 250keV. The energy coherent widths Γ of the products are extracted by using the energy autocorrelation functions. Taking into account the properties of both the rotation and decay in an intermediate dinuclear system formed in the reaction, the Ericson statistical theory in nuclear reaction has been developed and the evolution process of the dinuclear system is discussed.

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