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Ni2+:CsMgCl3晶体的光谱精细结构、零场分裂参量及Jahn-Teller效应
引用本文:殷春浩,焦杨,宋宁,茹瑞鹏,杨柳,张雷.Ni2+:CsMgCl3晶体的光谱精细结构、零场分裂参量及Jahn-Teller效应[J].光子学报,2007,36(11):2087-2093.
作者姓名:殷春浩  焦杨  宋宁  茹瑞鹏  杨柳  张雷
作者单位:中国矿业大学,理学院,江苏,徐州,221008
基金项目:教育部留学归国人员实验室基金 , 中国矿业大学校科研和校改项目
摘    要:应用不可约张量理论构造了三角对称晶场中3d2/3d8态离子的45阶可完全对角化的微扰哈密顿矩阵,研究了CsNiCl3单晶掺入CsMgCl3晶体后光谱精细结构、晶体结构、零场分裂参量、Jahn-Teller效应以及自旋单重态对Ni2+离子基态能级的影响,理论与实验相符合.研究了自旋-自旋耦合作用和Trees修正对Ni2+:CsMgCl3晶体的光谱精细结构和零场分裂参量的影响,发现有五种机理会影响零场分裂参量:(1)自旋-轨道耦合机理;(2)自旋-自旋耦合机理;(3)自旋-轨道与自旋-自旋联合耦合机理;(4)自旋-轨道与Trees修正联合耦合机理,(5)自旋-自旋作用与Trees联合耦合机理.其中自旋-轨道耦合机理是最主要的,其它几种机理也是不可忽略的.

关 键 词:基态能级  精细结构  零场分裂  自旋-自旋耦合
文章编号:1004-4213(2007)11-2087-7
收稿时间:2006-02-09
修稿时间:2006年2月9日

Spectrum Hyper-fine Structure and Zero-field Splitting Parameters with Jahn-teller Effect of CsNiCl3 Crystal
YIN Chun-hao,JIAO Yang,SONG Ning,RU Rui-peng,YANG Liu,ZHANG Lei.Spectrum Hyper-fine Structure and Zero-field Splitting Parameters with Jahn-teller Effect of CsNiCl3 Crystal[J].Acta Photonica Sinica,2007,36(11):2087-2093.
Authors:YIN Chun-hao  JIAO Yang  SONG Ning  RU Rui-peng  YANG Liu  ZHANG Lei
Abstract:The 45 ranks complete diagonalized Hamiltonian matrixes of 3d2/3d8 ions configuration in the trigonal symmetry have been established by irreducible representation method. The spectra hyper-fine structure and the constants of crystal structure and zero-field splitting parameters of CsNiCl3 crystal doped with CsMgCl3 crystal have been studied as well as Jahn-Teller effect and the influence of the spin singlet to the ground levels of Ni2+ ion. The results agree with the experimental findings. Besides, taking into account the influence of the spin-spin (SS) coupling interactions and Trees correction omitted in previous publication.It is found that zero-field splitting parameters arise from five mechanisms; (1) Spin-orbit coupling mechanism; (2) Spin-spin coupling mechanism; (3) Spin-orbit and spin-spin combined coupling mechanism; (4) Spin-orbit and Trees correction combined coupling mechanism, (5)Spin-spin and Trees correction combined coupling mechanism. The spin-orbit coupling mechanism is the most important and other mechanisms can not be omitted.
Keywords:Ground-state energy levels  Hyper-fine structure  Zero-field splitting  Spin-spin coupling
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