DESCRIPTIONS OF THE EQUILIBRATION PROCESS OF THE INTRINSIC DEGREES OF FREEDOM AND DISSIPATIVE PROCESS OF THE NUCLEAR COLLECTIVE MOTION

  • In this paper the Hamiltonian model is used for studying the nuclear dynamics by taking both the one-body and two-body interaction mechanisms into account. On the basis of the Von Neuman equation the coupling between the collective motion and the single particle degrees of freedom is discussed. Thus, the equations obtained are physically transparent and easy for numerical computations. They may be useful for describing the dissipative process of the nuclear collective motion as well as the equilibration process of the intrinsic degrees of freedom.
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  • [1] 卓益忠等, 科学通报, 7(1981), 401.[2] 卓益忠等, 高能物理与核物理, 3(1979), 501; 5(1981), 584.[3] 冯仁发等, 原子能科学技术, 6(1981), 703.[4] C. M. Nerves and H,A.Weidenmüller, Phys. Rev. C, (in press).[5] G. Sehiitte and L. Wilets, Phys. Rev., C25(1982 ) , 673.
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FENG Ren-Fa, ZHANG Jing-Shang, MA Zhong-Yu, WU Xi-Zhen and ZHUO Yi-Zhong. DESCRIPTIONS OF THE EQUILIBRATION PROCESS OF THE INTRINSIC DEGREES OF FREEDOM AND DISSIPATIVE PROCESS OF THE NUCLEAR COLLECTIVE MOTION[J]. Chinese Physics C, 1984, 8(3): 361-365.
FENG Ren-Fa, ZHANG Jing-Shang, MA Zhong-Yu, WU Xi-Zhen and ZHUO Yi-Zhong. DESCRIPTIONS OF THE EQUILIBRATION PROCESS OF THE INTRINSIC DEGREES OF FREEDOM AND DISSIPATIVE PROCESS OF THE NUCLEAR COLLECTIVE MOTION[J]. Chinese Physics C, 1984, 8(3): 361-365. shu
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Received: 1900-01-01
Revised: 1900-01-01
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DESCRIPTIONS OF THE EQUILIBRATION PROCESS OF THE INTRINSIC DEGREES OF FREEDOM AND DISSIPATIVE PROCESS OF THE NUCLEAR COLLECTIVE MOTION

    Corresponding author: FENG Ren-Fa,

Abstract: In this paper the Hamiltonian model is used for studying the nuclear dynamics by taking both the one-body and two-body interaction mechanisms into account. On the basis of the Von Neuman equation the coupling between the collective motion and the single particle degrees of freedom is discussed. Thus, the equations obtained are physically transparent and easy for numerical computations. They may be useful for describing the dissipative process of the nuclear collective motion as well as the equilibration process of the intrinsic degrees of freedom.

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