首页 | 本学科首页   官方微博 | 高级检索  
     检索      

稀土区奇A核晕带存在从转动到振动形状演化的直接证据(英文)
引用本文:周厚兵,黄山,董国香,沈自序,卢慧金,王乐乐,孙小军,许甫荣.稀土区奇A核晕带存在从转动到振动形状演化的直接证据(英文)[J].原子核物理评论,2018,35(3):243-249.
作者姓名:周厚兵  黄山  董国香  沈自序  卢慧金  王乐乐  孙小军  许甫荣
作者单位:1.广西师范大学物理科学与技术学院, 广西 桂林 541004;
基金项目:国家自然科学基金资助项目(11505035,11465005,11505056,11605054,11675266,U1732138,11775057,11765004,11565008);广西自然科学基金资助项目(2017GXNSFAA198160,2015GXNSFDA139004);广西高等学校高水平创新团队及卓越学者计划资助项目
摘    要:原子核的形状演化效应是核结构研究的重要基础问题之一。通常认为,A=160质量区的奇A核位于大形变核区域,它们的激发态能谱将呈现出典型的转动激发特征。然而,基于E-GOS曲线方法,发现随着角动量的增加,该质量区奇A核的晕带具有显著地从转动激发演化成为振动激发的形状演化现象。此外,为深入理解原子核形状演化的微观机制,采用Total-Routhian-Surface(TRS)方法针对稀土区的奇A核进行了理论计算,结果表明,165Yb和157Dy同位素在低激发态时具有稳定的长椭形变,当角动量大于0.50 MeV后,核芯的四极形变显著减小并开始产生三轴形变。The phase transition of nuclei with increasing angular momentum (or spin) and excitation energy is one of the most fundamental topics of nuclear structure research. The odd-N nuclei with A ≈160 are widely considered belonging to the well-deformed region, and their excitation spectra are energetically favored to exhibit the rotational characteristics. In this work, however, the evidence suggesting that the nuclei changes from rotation to vibration along the yrast lines as a function of spin was found. The simple method, named as E-Gamma Over Spin (E-GOS) curves, would be used to discern the evolution from rotational to vibrational structure in nuclei for various spin ranges. Meanwhile, in order to understand the band structure properties of nuclei, theoretical calculations have been performed for the yrast bands of the odd-A rare-earth nuclei within the framework of the total routhian surface (TRS) model. The TRS plots predict that the 165Yb and 157Dy isotopes have large quadrupole shapes at low spin states. At higher rotational frequency (~ >0.50 MeV), a clear reduction of the quadrupole deformation is indicated by the present results, and the isotopes become rigid in the γ deformation.

关 键 词:相变    E-GOS曲线    总罗斯面
收稿时间:2018-05-23

Evidence for Rotational to Vibrational Evolution Along the Yrast Line in the Odd-A Rare-earth Nuclei
ZHOU Houbing,HUANG Shan,DONG Guoxiang,SHEN Zixu,LU Huijin,WANG Lele,SUN Xiaojun,XU Furong.Evidence for Rotational to Vibrational Evolution Along the Yrast Line in the Odd-A Rare-earth Nuclei[J].Nuclear Physics Review,2018,35(3):243-249.
Authors:ZHOU Houbing  HUANG Shan  DONG Guoxiang  SHEN Zixu  LU Huijin  WANG Lele  SUN Xiaojun  XU Furong
Institution:1.Department of Physics, Guangxi Normal University, Guilin 541004, Guangxi, China;2.Guangxi Key Laboratory Breeding Base of Nuclear Physics and Technology, Guangxi Normal University, Guilin 541004, Guangxi, China;3.School of Science, Huzhou University, Huzhou 313000, Zhejiang, China;4.School of Physics and SK Laboratory of Nuclear Physics & Technology, Peking University, Beijing 100871, China
Abstract:The phase transition of nuclei with increasing angular momentum (or spin) and excitation energy is one of the most fundamental topics of nuclear structure research. The odd-N nuclei with A ≈160 are widely considered belonging to the well-deformed region, and their excitation spectra are energetically favored to exhibit the rotational characteristics. In this work, however, the evidence suggesting that the nuclei changes from rotation to vibration along the yrast lines as a function of spin was found. The simple method, named as E-Gamma Over Spin (E-GOS) curves, would be used to discern the evolution from rotational to vibrational structure in nuclei for various spin ranges. Meanwhile, in order to understand the band structure properties of nuclei, theoretical calculations have been performed for the yrast bands of the odd-A rare-earth nuclei within the framework of the total routhian surface (TRS) model. The TRS plots predict that the 165Yb and 157Dy isotopes have large quadrupole shapes at low spin states. At higher rotational frequency (hω~ >0.50 MeV), a clear reduction of the quadrupole deformation is indicated by the present results, and the isotopes become rigid in the γ deformation.
Keywords:phase transition  E-GOS curve  total Routhian surfaces
本文献已被 CNKI 等数据库收录!
点击此处可从《原子核物理评论》浏览原始摘要信息
点击此处可从《原子核物理评论》下载免费的PDF全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号