Study of Nuclear Behavior in Axially-Symmetric Superdeformation and Triaxial Superdeformation

  • Using axially-symmetric and triaxial superdeformed models [660 1/2] band in 165Lu is investigated. The observed transition energies can be reproduced quite well in both models. However, the signature staggering index, triaxiality factor and the ratio of dynamical quadrupole moment Q(1) to Q(2) in axially-symmetric superdeformed model are obviously different from those in triaxial superdeformed model, which may be used to identify the deviation of nuclear shape from axial symmetry. Thus, the energy spectra are not decisive to draw the nuclear shape. Emphasis must be Placed on the properties of electromagnetic transitions.
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  • [1] Schmitz W, Yang C X, Hubel H et al. Nucl. Phys., 1992, A539(1):112–136 2 Schmitz W, Hubel H, Yang C X et al. Phys. Lett., 1993, B303(3,4):230–235 3 Schnack–Petersen H, Bengtsson R, Bark R A et al. Nucl. Phys., 1995, A594(2):175–202 4 Yang C X, Wu X G, Zheng H et al. Eur. Phys. J., 1998, A1:237–239 5 Sarantitestes D G, LaFosse D R, Devlin M et al. Phys. Rev., 1998, C57(1):R1–R56 Xing Z, Wang Z X, Chen X Q. Chin. Phys. Lett., 1998, 15(3):170–1727 Chen X Q, Xing Z. J. Phys., 1993, G19(11):1869–18778 Casten R F, Zamifir, Brentano P You et al. Phys. Lett., 1991, B265(1):9~13 9 Hagemann G B, Hamamoto I. Phys. Rev., 1989, C40(6):2862–2869
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Xu Jinzhang, Wang Zixing, Chen Xignqu and Xing Zheng. Study of Nuclear Behavior in Axially-Symmetric Superdeformation and Triaxial Superdeformation[J]. Chinese Physics C, 1999, 23(11): 1102-1107.
Xu Jinzhang, Wang Zixing, Chen Xignqu and Xing Zheng. Study of Nuclear Behavior in Axially-Symmetric Superdeformation and Triaxial Superdeformation[J]. Chinese Physics C, 1999, 23(11): 1102-1107. shu
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Received: 1998-08-05
Revised: 1900-01-01
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Study of Nuclear Behavior in Axially-Symmetric Superdeformation and Triaxial Superdeformation

    Corresponding author: Xu Jinzhang,
  • Center of Theoretical Nuclear Physics, National Laboratory of Heavy Ion Accelerator, Lanzhou 7300002 Department of Modern Physics, Lanzhou University Lanzhou 7300003 Institute of Nuclear Research, The Chinese Academy of Sciences, shanghai 201800

Abstract: Using axially-symmetric and triaxial superdeformed models [660 1/2] band in 165Lu is investigated. The observed transition energies can be reproduced quite well in both models. However, the signature staggering index, triaxiality factor and the ratio of dynamical quadrupole moment Q(1) to Q(2) in axially-symmetric superdeformed model are obviously different from those in triaxial superdeformed model, which may be used to identify the deviation of nuclear shape from axial symmetry. Thus, the energy spectra are not decisive to draw the nuclear shape. Emphasis must be Placed on the properties of electromagnetic transitions.

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