MICROSCOPIC CALCULATION OF THE INERTIA IN HEAVY NUCLEI

  • A realistic calculation of the inertia for 236U fisson based on the linear response theory is presented, in which the single particle states are provided by Nilsson model. The dependence of the nuclear inertia Mδiδi on the collective variables δ2, δ4 is studied at the range of certain nuclear temperature (0—1 MeV). The pairing effect and the shell effect on the nuclear inertia are discussed. The calculated results show a very prominent structure at level crossing points and when acrossing the critical temperature.
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  • [1] 冯仁发, 吴锡真等, 原子能科学技术, 6(1981), 703.[2] H. Hofmann, P. Siemens, Nucl. Phys., A257 (1976), 165. ,[3] K. I. Sato, A. Iwamoto, K. Harada S. Ymaji and S. Yoshida, JAERI-mamo. 7596 (1978).[4] 冯仁发, 吴锡真等, 高能物理与核物理, 3(1981), 346.[5] 冯仁发等, 高能物理与核物理, 待发表.[6] J. R. Nix, STUDIES IN TFBE LIQUID-DROP THERY OF NUCLEAR FISSION, UCRL 11338 (1964).[7] D. R. Inglis, Phys. Rev., 96(1954), 1059.[8] P. Moller, J. R. Nix, Nucl. Phys., A296 (1978). 289.[9] A. Iwamoto, W. Greiner, Z. Physik, A292(1979), 301. -[10] A. Iwamoto, J. A. Maruhn, Z. Physik, A293 (1979), 315.[11] L. G. Mretto, Nucl. Phys., A185 (1972), 145.[12] T. Ledergerber and H. C. PAULI, Nucl. Phys., A207(1973), 1.[13] H. Hofmann, P. J. Siemens, IAEA-SM-241/H4 (1980).
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FENG Ren-Fa, WU Xi-Zhen, ZHANG Xi-Zhen and ZHUO Yi-Zhong. MICROSCOPIC CALCULATION OF THE INERTIA IN HEAVY NUCLEI[J]. Chinese Physics C, 1984, 8(1): 81-90.
FENG Ren-Fa, WU Xi-Zhen, ZHANG Xi-Zhen and ZHUO Yi-Zhong. MICROSCOPIC CALCULATION OF THE INERTIA IN HEAVY NUCLEI[J]. Chinese Physics C, 1984, 8(1): 81-90. shu
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Received: 1900-01-01
Revised: 1900-01-01
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MICROSCOPIC CALCULATION OF THE INERTIA IN HEAVY NUCLEI

    Corresponding author: FENG Ren-Fa,

Abstract: A realistic calculation of the inertia for 236U fisson based on the linear response theory is presented, in which the single particle states are provided by Nilsson model. The dependence of the nuclear inertia Mδiδi on the collective variables δ2, δ4 is studied at the range of certain nuclear temperature (0—1 MeV). The pairing effect and the shell effect on the nuclear inertia are discussed. The calculated results show a very prominent structure at level crossing points and when acrossing the critical temperature.

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