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Dependence of Quasi-Particle Alignment on Proton Number in N=44 Isotones ^(82)Sr,^(83)Y,^(84)Zr and ^(85)Nb

Dependence of Quasi-Particle Alignment on Proton Number in N=44 Isotones ^(82)Sr,^(83)Y,^(84)Zr and ^(85)Nb
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摘要 The g-factors of Ground Rotational Band states of N = 44 isotones 82^Sr, 83^Y, 84^Zr and 85^Nb have been measured by the transient-magnetic-field ion implantation perturbed angular distribution (TMF-IMPAD) method. The measured g-factors of 82^Sr increase with the increase of spin I, indicating a proton alignment only. Positive peaks appear in the variation of g-factors with spin for 83^Y and 84^Zzr at spin 21/2^+ and 10^+ respectively, indicating a proton alignment followed by a neutron alignment. A negative peak occurs for SSNb at the spin 25/2^+, indicating a neutron alignment followed by a proton alignment. The g-factors of Ground Rotational Band states of N = 44 isotones 82^Sr, 83^Y, 84^Zr and 85^Nb have been measured by the transient-magnetic-field ion implantation perturbed angular distribution (TMF-IMPAD) method. The measured g-factors of 82^Sr increase with the increase of spin I, indicating a proton alignment only. Positive peaks appear in the variation of g-factors with spin for 83^Y and 84^Zzr at spin 21/2^+ and 10^+ respectively, indicating a proton alignment followed by a neutron alignment. A negative peak occurs for SSNb at the spin 25/2^+, indicating a neutron alignment followed by a proton alignment.
出处 《Plasma Science and Technology》 SCIE EI CAS CSCD 2012年第5期405-407,共3页 等离子体科学和技术(英文版)
基金 supported by National Science Foundation of China (Nos.10435010,109751891)
关键词 N=44 isotones 82^Sr 83^Y 84^Zr and SSNb quasi-particle alignment g-factor TMF-IMPAD N=44 isotones 82^Sr, 83^Y, 84^Zr and SSNb, quasi-particle alignment, g-factor,TMF-IMPAD
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  • 1Sheikh J A, Rowley N, Nagarajan M A, et al. 1990 Phys. Rev. Lett., 64:376.
  • 2Bharuth-Ram K, Billowes J, Heese J, et al. 1990, Hyp Int., 59:190.
  • 3Kucharska A I, Billowes J, Lister C J. 1989, J. Phys G, 15:1039.
  • 4Teich C, Jungchaus A, Fischer V. 1999, Phys. Rev. C 59:1943.
  • 5Benczer-Koller, Hass N, Sak J. 1980, Ann. Rec. Nucl. Part. Sci., 30:53.
  • 6Yuan D, Zheng Y, Zhou D, et al. 2007, Hyp. Int., 180: 49.
  • 7Shu N K B, Melnik D, Brennan J M, et al. 1980, Phys. Rev. C, 21:1828.
  • 8Yuan D Q, Zheng ~ N, Zhou D M, et al. 2007, Hyp. Int., 180:49.
  • 9Larsson S E, Leander G, Ragnarsson I. 1978, Nucl. Phys. A, 307:189.
  • 10Ragnarsson I, Semmes P B. 1988, Hyp. Int., 43:425.

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