High-spin states in odd-odd 170 Ta

High-spin states in odd-odd 170 Ta
复制标题

DOI:
10.1103/physrevc.60.044311
复制
发表时间:
1999-09
期刊:
影响因子:
3.1
通讯作者:
Y. Zhang;S. Zhang;Qiang Zhao;S. Zhu;H. Xu;X. Zhou;Yingxiang Guo;X. Lei;J. Lu;Weiling Huang;Q. Gou;H. Jin;Z. Liu;Y. Luo;X. Sun;Yanmin Zhu;Xin Wu;S. Wen;C. Yang
Y. Zhang;S. Zhang;Qiang Zhao;S. Zhu;H. Xu;X. Zhou;Yingxiang Guo;X. Lei;J. Lu;Weiling Huang;Q. Gou;H. Jin;Z. Liu;Y. Luo;X. Sun;Yanmin Zhu;Xin Wu;S. Wen;C. Yang
中科院分区:
物理与天体物理2区
文献类型:
--
作者:
Y. Zhang;S. Zhang;Qiang Zhao;S. Zhu;H. Xu;X. Zhou;Yingxiang Guo;X. Lei;J. Lu;Weiling Huang;Q. Gou;H. Jin;Z. Liu;Y. Luo;X. Sun;Yanmin Zhu;Xin Wu;S. Wen;C. Yang

文献摘要

被引文献

相似文献

High-spin states in ${}^{170}\mathrm{Ta}$ have been studied via ${}^{159}{\mathrm{T}\mathrm{b}(}^{16}\mathrm{O},5n\ensuremath{\gamma}{)}^{170}\mathrm{Ta}$ reaction through excitation functions, K x-\ensuremath{\gamma}, and $\ensuremath{\gamma}\ensuremath{-}\ensuremath{\gamma}\ensuremath{-}t$ coincidence measurements. Three rotational bands have been identified which consist of two strongly coupled bands and a semidecoupled one. The quasiparticle configurations of these bands and the interpretation of experimental results are discussed based on the existing knowledge of neighboring odd-mass and odd-odd nuclei and in the framework of the cranked-shell model. Low-spin signature inversion in the $\ensuremath{\pi}{9/2}^{\ensuremath{-}}[514]\ensuremath{\bigotimes}\ensuremath{\nu}{5/2}^{+}[642]$ and $\ensuremath{\pi}{1/2}^{\ensuremath{-}}[541]\ensuremath{\bigotimes}\ensuremath{\nu}{5/2}^{+}[642]$ bands are discussed. A delay (reduction) of the band-crossing frequency is observed in the $\ensuremath{\pi}{1/2}^{\ensuremath{-}}[541]\ensuremath{\bigotimes}\ensuremath{\nu}{5/2}^{+}[642]$ $(\ensuremath{\pi}{5/2}^{+}[402]\ensuremath{\bigotimes}\ensuremath{\nu}{5/2}^{+}[642])$ band. This configuration-dependent crossing frequency is discussed in comparison with the AB crossing frequencies in the related bands of neighboring odd-Z isotopes.
High-spin states in ${}^{170}\mathrm{Ta}$ have been studied via ${}^{159}{\mathrm{T}\mathrm{b}(}^{16}\mathrm{O},5n\ensuremath{\gamma}{)}^{170}\mathrm{Ta}$ reaction through excitation functions, K x-\ensuremath{\gamma}, and $\ensuremath{\gamma}\ensuremath{-}\ensuremath{\gamma}\ensuremath{-}t$ coincidence measurements. Three rotational bands have been identified which consist of two strongly coupled bands and a semidecoupled one. The quasiparticle configurations of these bands and the interpretation of experimental results are discussed based on the existing knowledge of neighboring odd-mass and odd-odd nuclei and in the framework of the cranked-shell model. Low-spin signature inversion in the $\ensuremath{\pi}{9/2}^{\ensuremath{-}}[514]\ensuremath{\bigotimes}\ensuremath{\nu}{5/2}^{+}[642]$ and $\ensuremath{\pi}{1/2}^{\ensuremath{-}}[541]\ensuremath{\bigotimes}\ensuremath{\nu}{5/2}^{+}[642]$ bands are discussed. A delay (reduction) of the band-crossing frequency is observed in the $\ensuremath{\pi}{1/2}^{\ensuremath{-}}[541]\ensuremath{\bigotimes}\ensuremath{\nu}{5/2}^{+}[642]$ $(\ensuremath{\pi}{5/2}^{+}[402]\ensuremath{\bigotimes}\ensuremath{\nu}{5/2}^{+}[642])$ band. This configuration-dependent crossing frequency is discussed in comparison with the AB crossing frequencies in the related bands of neighboring odd-Z isotopes.