Experimental Observation of High Spin States in 135La Nucleus

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LUO Peng, ZHANG Yu-Hu, ZHOU Xiao-Hong, LIU Min-Liang, GUO Ying-Xiang, LIU Zhong, LEI Xiang-Guo, SONG Li-Tao, ZHENG Yong, WANG Hua-Lei, YU Hai-Ping, XIE Cheng-Ying and Experimental Observation of High Spin States in 135La Nucleus[J]. Chinese Physics C, 2004, 28(5): 495-501.
LUO Peng, ZHANG Yu-Hu, ZHOU Xiao-Hong, LIU Min-Liang, GUO Ying-Xiang, LIU Zhong, LEI Xiang-Guo, SONG Li-Tao, ZHENG Yong, WANG Hua-Lei, YU Hai-Ping, XIE Cheng-Ying and Experimental Observation of High Spin States in 135La Nucleus[J]. Chinese Physics C, 2004, 28(5): 495-501. shu
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Received: 2003-10-16
Revised: 1900-01-01
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Experimental Observation of High Spin States in 135La Nucleus

    Corresponding author: ZHANG Yu-Hu,
  • Institute of Modern Physics,The Chinese Academy of Science,Lanzhou 730000,China2 Graduate School of the Chinese Academy of Sciences,Beijing 100039,China3 Department of Physics,Jilin University,Changchun 130012,China4 Institute of Physics and Tandem Accelerator Center,University of Tsukuba,Ibaraki 305-006,Japan

Abstract: High spin states of 135La have been experimentally studied by using 128Te(10B, 3n) 135La reaction at 46 MeV beam energy. Based on the γ-γ coincidence relationships, relative intensities and ADO ratios, a level scheme of 135La has been established. Both signature components of the πh11/2 negative-parity band and a band crossing at ω≈0.40MeV were observed. In view of the systematics of the N=78 isotones, this backbending is proposed to be caused by the alignment of a pair of πh11/2 protons. The πh11/2 protons drive the nuclear core towards γ≈0°, the collective prolate shape. In addition, a ΔI=1 negative-parity band with strong M1 transitions and a very small signature splitting was observed. Comparing with the systematic features of ΔI=1 bands in neighboring odd-proton nuclei in this mass region, the πh11/2(νh11/2)2 configuration was assigned to the ΔI=1 bands of 135La. The alignment of the h11/2 neutron pair drives the nuclear core towards γ≈-60°, the collective oblate shape.

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