首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到18条相似文献,搜索用时 123 毫秒
1.
采用完全对角化方法,讨论了三角对称和四角对称下d3离子自旋二重态和自旋四重态对基态4A2(4F)自旋哈密顿(SH)参量(包括零场分裂(ZFS)和g因子)的影响机理.并对影响基态SH参量的四种机理(SO机理,SS机理,SOO机理和SO-SS-SOO联合机理)进行了分析.结果表明,自旋二重态与四重态对d3离子基态零场分裂都具有重要贡献;而基态g因子主要由四重态决定,二重态对g因子贡献很小.此外,发现SS机理和SOO机理对基态EPR参量的贡献主要由四重态决定,二重态的影响很小.  相似文献   

2.
应用不可约张量方法和群的理论构造了三角对称晶场中3d5组态离子的252阶可完全对角化的微扰哈密顿矩阵,利用该矩阵计算了LiNbO3∶Fe3+晶体的光谱精细结构、零场分裂、晶体结构、Jahn-Teller(J-T)效应,其理论计算值与实验值相符合,并研究了自旋四重态、自旋二重态分别对基态能级的影响,证明了自旋四重态对基态能级的贡献是主要的,自旋二重态对基态能级的贡献虽很小,但却是不可忽略的.在此基础上,进一步研究了自旋-轨道耦合作用、自旋-自旋耦合作用对LiNbO3∶Fe3+晶体的光谱精细结构和零场分裂参量的影响,发现自旋-轨道耦合作用是最主要的,自旋-自旋耦合作用也是不可忽略的. 研究表明,该种物质的四重态光谱结构中含有J-T效应. 其产生原因是自旋-轨道耦合及三角畸变的共同作用的结果,两者缺一不可.  相似文献   

3.
魏群  杨子元  王参军  许启明 《物理学报》2007,56(4):2393-2398
提出了解释掺杂离子局域结构畸变的配体平面移动模型,建立了此模型下晶体微观结构与自旋哈密顿参量之间的定量关系.在考虑自旋与自旋、自旋与另一电子轨道和轨道与轨道作用等微小磁相互作用的基础上,采用全组态完全对角化方法,对Al2O3晶体中V3+的局域结构和自旋哈密顿参量进行了系统的研究.结果表明,V3+掺入Al2O3晶体后,上下配体氧平面间距离增大了0.0060 nm.从而成功地解释了Al2O3:V3+晶体的自旋哈密顿参量.在此基础上,研究了三角晶场下3d2离子自旋哈密顿参量的微观起源.研究发现,自旋三重态对自旋哈密顿参量的贡献是主要的,微小磁相互作用对自旋哈密顿参量的贡献只与自旋三重态有关.  相似文献   

4.
基于完全对角化方法(complete diagonalization method,CDM),研究了6S(3d5)态离子在立方对称晶场中的磁相互作用,分析了自旋哈密顿参量(a,g,Δg)的微观起源.研究中除了考虑研究者通常考虑的SO(spin-orhit)磁相互作用外,同时考虑了SS(spin-spin),SOO(spin-other-orbit),OO(orbit-orbit)磁相互作用.研究表明:6S(3d5)态离子在立方对称品场中的自旋哈密顿参量起源于五种机理,即SO机理,SS机理,SOO机理,OO机理以及SO-SS-SOO-OO联合作用机理.文中研究了五种机理的相对重要性,结果表明:SO机理与SO-SS-SOO-OO联合作用机理在五种机理中最为重要.尽管SS,SOO,OO磁相互作用单独作用时对自旋哈密顿参量的贡献很小,但它们的联合作用SO-SS-SOO-OO机理对自旋哈密顿参量的贡献非常可观.此外研究表明:零场分裂参量a主要来自纯自旋四重态及自旋二重态与自旋四重态联合作用的贡献,而Zeeman g(或者Δg)因子主要来自纯自旋四重态的贡献.纯自旋二重态对白旋哈密顿参量a与g(或者△g)的贡献为零.在我们所选择的晶场区域,发现卜列关系始终成立:a>0,a(-|Dq|)<a(|Dq|),g(-Dq)=g(Dq),a(-Dq,-ξd,B,C)=a(Dq,ξd,B,C),△g(-Dq,-ξd,B,C)=△g(Dq,ξd,B,C).作为本文理论的应用,研究了四种典型的Mn2 掺杂晶体材料,即Mn2 :KZnR,Mn2 :RbcdF3,Mn2 :MgO,Mn2 :CaO,理论与实验测量符合很好.  相似文献   

5.
使用大立体角的锗探测器陈列(Hyperball),观测到7ΛLi基态二重态之间的自旋翻转M1γ跃迁(3/2+→1/2+,能量为691.7±0.6±1.0keV.为Λ与核子之间的自旋-自旋相互作用提供了重要的信息.  相似文献   

6.
杨子元 《物理学报》2008,57(7):4512-4520
基于完全对角化方法(complete diagonalization method, CDM), 研究了6S(3d5)态离子在立方对称晶场中的磁相互作用,分析了自旋哈密顿参量(a, gg)的微观起源.研究中除了考虑研究者通常考虑的SO(spin-orbit)磁相互作用外,同时考虑了SS(spin-spin),SOO(spin-other-orbit),OO(orbit-orbit)磁相互作用.研究表明:6S(3d5)态离子在立方对称晶场中的自旋哈密顿参量起源于五种机理,即SO机理,SS机理,SOO机理,OO机理以及SO-SS-SOO-OO联合作用机理.文中研究了五种机理的相对重要性,结果表明:SO机理与SO-SS-SOO-OO联合作用机理在五种机理中最为重要.尽管SS,SOO,OO磁相互作用单独作用时对自旋哈密顿参量的贡献很小,但它们的联合作用SO-SS-SOO-OO机理对自旋哈密顿参量的贡献非常可观.此外研究表明:零场分裂参量a主要来自纯自旋四重态及自旋二重态与自旋四重态联合作用的贡献,而Zeemang(或者Δg)因子主要来自纯自旋四重态的贡献.纯自旋二重态对自旋哈密顿参量ag(或者Δg)的贡献为零.在我们所选择的晶场区域,发现下列关系始终成立:a>0,a(-|Dq|)<a(|Dq|),g(-Dq)=g(Dq),a(-Dq,-ξd,B,C)=a(Dq,ξd, B,C),Δg(-Dq,-ξd, B, C)=Δg(Dq,ξd, B, C).作为本文理论的应用,研究了四种典型的Mn2+掺杂晶体材料,即Mn2+:KZnF3,Mn2+: RbCdF3,Mn2+: MgO,Mn2+: CaO,理论与实验测量符合很好. 关键词: 自旋哈密顿参量 6S(3d5)态离子')" href="#">6S(3d5)态离子 磁相互作用 完全对角化方法(CDM)  相似文献   

7.
晶体材料中3d2态离子自旋哈密顿参量的微观起源   总被引:11,自引:0,他引:11       下载免费PDF全文
杨子元 《物理学报》2004,53(6):1981-1988
采用了中间场耦合图像,考虑了以前研究中被忽略的SS (spin-spin)磁相互作用以及SOO (spin-other-orbit)磁相互作用,利用完全对角化方法,研究了3d2态离子在三角对称 (C3v, D3, D3d)晶体中自旋哈密顿(SH)参量的微观起源.发现自旋哈密顿参量 (包括零场分裂参量D和g因子g∥,g⊥)来自四种耦合机理:(1)SO (spin-orbit)耦合机理; (2) SS耦合机理;(3)SOO 关键词: 自旋哈密顿参量 2态离子')" href="#">3d2态离子 三角对称晶场 SS与SOO作用 SO-SS-SOO联合作用机理  相似文献   

8.
通过重离子融合蒸发反应16O(82Se+4n)94Mo布局了94Mo核的高自旋态.利用多探头探测器阵列GASP进行了在束γ测量,从而重新研究了94Mo核的高自旋态能级结构.基于新发现的一些重要的连接跃迁,对94Mo核的高自旋态能级纲图做了重要修改.将新的能级结构与壳模型计算进行了比较和讨论.结果表明要正确的描述94?Mo核的高自旋态(自旋值大于14)能级结构,应考虑价中子在d5/2,g7/2和h11/2轨道上的激发.  相似文献   

9.
基于双自旋轨道耦合系数模型并结合完全能量矩阵的方法,研究了AMF3(A=K, Rb; M=Zn, Cd, Ca):Ni2+和K2ZnF4:Ni2+体系中Ni2+的基态分裂和局域结构. 通过模拟光谱和电子顺磁共振(EPR)谱,结果显示在研究氟化物络合分子的能级精细结构和局域结构畸变时,配体F-对体系的自旋轨道耦合机理的影响不可忽略,同时讨论了EPR参量随夹角、自选轨道耦合、平均参量以及偏离参量的变化规律.  相似文献   

10.
江阔 《中国物理 B》2010,19(4):2801-2807
通过对La0.8Sr0.2Mn1-yCoyO3(y≤02)饱和磁矩和输运的测量,研究了Co对La0.8Sr0.2MnO3的磁电阻影响机制.结果表明,在La0.8Sr0.2Mn1-yCoyO3y≤02)中Co3+离子是低自旋态.由于Mn3+—O—Co3+—O—Mn3+类型的磁交换与Mn3+-Mn4+离子间双交换作用相比较弱,Curie温度TC附近的磁电阻随着Co掺杂量的增加而降低.与此相反,由于Co2+离子与eg巡游电子的反铁磁交换耦合作用,低温区间的磁电阻随着Co掺杂量的增加而升高.  相似文献   

11.
杨子元 《中国物理 B》2009,18(3):1253-1260
The local structure distortion, the spin Hamiltonian (SH) parameters, and the electric fine structure of the ground state for Mn2+(3d5) ion in ZnO crystals are systematically investigated, where spin--spin (SS), spin--other--orbit (SOO) and orbit--orbit (OO) magnetic interactions, besides the well-known spin--orbit (SO) coupling, are taken into account for the first time, by using the complete diagonalization method. The theoretical results of the second-order zero-field splitting (ZFS) parameter D, the fourth-order ZFS parameter (a-F), the Zeeman g-factors: g// and g, and the energy differences of the ground state: \delta1 and \delta2 for Mn2+ in Mn2+: ZnO are in good agreement with experimental measurements when the three O2- ions below the Mn2+ ion rotate by 1.085o away from the [111]-axis. Hence, the local structure distortion effect plays an important role in explaining the spectroscopic properties of Mn2+ ions in Mn2+: ZnO crystals. It is found for Mn2+ ions in Mn2+: ZnO crystals that although the SO mechanism is the most important one, the contributions to the SH parameters, made by other four mechanisms, i.e. SS, SOO, OO, and SO~SS~SOO~OO mechanisms, are significant and should not be omitted, especially for calculating ZFS parameter D.  相似文献   

12.
A new module has been developed within the CFA/MSH computer package, which is applicable for d2 and d8 ions at sites of trigonal symmetry type I (C3v,D3,D3d) and type II (C3,C3i), including the ‘imaginary’ CF term. For the first time the spin-spin (SS) and spin-other-orbit (SOO) interactions have also been included in the Hamiltonian. This module enables to study the contributions to the energy levels and the spin Hamiltonian parameters, i.e. zero-field splitting D and g-factors: g and g. The contributions arising from the spin-orbit (SO), SS, and SOO interaction as well as those due to the low symmetry CF effects induced by the distortion angle ?, which describes the difference between C3 and C3v symmetry, can be studied. As an application of the new module, calculations have been carried out for V3+(3d2) ions in α-Al2O3 crystal, taking into account for the first time the SS and SOO interactions, and the low symmetry CF effects. The results show that (i) the contributions from the SS and SOO interactions to the energy levels are larger for free V3+ ions than those for V3+ ions in α-Al2O3 crystal, (ii) both the contributions to the SH parameters and the energy levels arising from the SOO interaction are larger than those arising from the SS interaction, (iii) the contributions due to the low symmetry CF effects induced by the distortion angle ? are in general significant, (iv) D and g are sensitive to the distortion angle ?, whereas g is insensitive to ?, and (v) the influence of the lattice distortions on the spectroscopic properties of V3+ ion in α-Al2O3 is pronounced. It appears important for similar ion-crystal cases to consider the lattice distortions in detailed calculations, which take into account the relevant contributions from the SO, SS and SOO interactions. A good agreement between the theoretical and experimental results has been obtained.  相似文献   

13.
杨子元  郝跃 《物理学报》2005,54(6):2883-2892
基于完全对角化方法,研究了4B1(3d3)态 离子在四角对称晶场中的磁相互作用,分析了自旋哈密顿参量(b02, g, g, Δg)的微观起源.结果表明 :在被考虑的大部分晶场区域,人们通常考虑的SO(spin-orbit)磁相互作用的贡献最为重要 ;然而,对于零场分裂参量b02而言,来自其他机理(包 括SS(spin-orbit),SOO(sp in-other-orbit),SO-SS-SOO)的贡献在大部分晶场区域超过了20%;在部分晶场区域,其 他机理的贡献甚至超过SO机理的贡献.详细地分析了Macfarlane 零场分裂参量b02 近似三阶微扰理论的收敛性,结果表明:该理论在大部分晶场区域收敛性较差.讨论了3d3态离子第一激发态2Eg分裂的微观起源.并利用 群论方法解 释了在C4v和C3v对称晶场中2Eg< /sub>态分裂的不同机理. 关键词: 4B1(3d3)态离子')" href="#">4B1(3d3)态离子 磁相互作用 自旋哈密 顿参量 完全对角化方法(CDM) 微扰理论方法(PTM)  相似文献   

14.
The local structure distortion and the spin Hamiltonian (SH) parameters, including the zero-field splitting (ZFS) parameter D and the Zeeman g-factors g and g, are theoretically investigated by means of complete diagonalization method (CDM) and the microscopic spin Hamiltonian theory for tetragonal charge compensation CrF5O defect center in Cr3+:KMgF3 crystals. The superposition model (SPM) calculations are carried out to provide the crystal field (CF) parameters. This investigation reveals that the replacement of O2− for F and its induced lattice relaxation Δ1(O2−) combined with an inward relaxation of the nearest five fluorine Δ2(F) give rise to a strong tetragonal crystal field, which in turn results in the large ZFS and large anisotropic g-factor Δg. The experimental SH parameters D and Δg can be reproduced well by assuming that O2− moves towards the central ion Cr3+ by Δ1(O2−)=0.172R0 and the five F ions towards the central ion Cr3+ by Δ2(F)=0.022R0. Our approach takes into account the spin-orbit (SO) interaction as well as the spin-spin (SS), spin-other-orbit (SOO), and orbit-orbit (OO) interactions omitted in previous studies. This shows that although the SO interaction is the most important one, the contributions to the SH parameters from other three magnetic interactions are appreciable and should not be omitted, especially for the ZFS parameter D.  相似文献   

15.
An extended complete diagonalization method/microscopic spin-Hamiltonian (CDM/MSH) program has been developed, which is applicable for d3 ions at sites of tetragonal symmetry type I (C4v, D2d, D4, D4h) and trigonal symmetry type I (C3v, D3, D3d). The Hamiltonian includes the spin-spin (SS) and spin-other-orbit (SOO) magnetic interactions besides the spin-orbit (SO) magnetic interaction usually taken into account. Utilizing the extended CDM/MSH program, the optical spectra, the spin-Hamiltonian (SH) parameters of the ground state 4B1, and the splitting δ(2E) of the first excited 2E state for Cr3+ (3d3) ions at C4v symmetry sites in MgO crystals have been successfully investigated. It is found that although the SO magnetic interaction is the most important one, the contributions to the SH parameters and the optical spectra from the SS and SOO magnetic interactions for Cr3+:MgO crystals are appreciable and should not be omitted, especially reaching 27.8% for the zero field splitting parameter D.  相似文献   

16.
17.
魏群 《物理学报》2009,58(5):3485-3490
采用完全对角化方法,以尖晶石结构的ZnAl24:Cr3+,ZnGa24:Cr3+和MgAl24:Cr3+系列晶体为例,联系晶格局域结构,对三角对称下3d3离子2Eg因子性质进行了研究.研究中考虑了包括自旋与自旋相互作用、自旋与另一轨 关键词: 2Eg因子')" href="#">2Eg因子 3离子')" href="#">3d3离子 尖晶石结构 磁相互作用  相似文献   

18.
Magnetic and spectroscopic properties of the planar antiferromagnet K2FeF4 are determined by the Fe2+ ions at tetragonal sites. The two-dimensional easy-plane anisotropy exhibited by K2FeF4 is due to the zero field splitting (ZFS) terms arising from the orbital singlet ground state of Fe2+ ions with the spin S=2. To provide insight into the single-ion magnetic anisotropy of K2FeF4, the crystal field theory and the microscopic spin Hamiltonian (MSH) approach based on the tensor method is adopted. Survey of available experimental data on the crystal field energy levels and free-ion parameters for Fe2+ ions in K2FeF4 and related compounds is carried out to provide input for microscopic modeling of the ZFS parameters and the Zeeman electronic ones. The ZFS parameters are expressed in the extended Stevens notation and include contributions up to the fourth-order using as perturbation the spin-orbit and electronic spin-spin couplings within the tetragonal crystal field states of the ground 5D multiplet. Modeling of the ZFS parameters and the Zeeman electronic ones is carried out. Variation of these parameters is studied taking into account reasonable ranges of the microscopic ones, i.e. the spin-orbit and spin-spin coupling constants, and the energy level splittings, suitable for Fe2+ ions in K2FeF4 and Fe2+:K2ZnF4. Conversions between the ZFS parameters in the extended Stevens notation and the conventional ones are considered to enable comparison with the data of others. Comparative analysis of the MSH formulas derived earlier and our more complete ones indicates the importance of terms omitted earlier as well as the fourth-order ZFS parameters and the spin-spin coupling related contributions. The results may be useful also for Fe2+ ions at axial symmetry sites in related systems, i.e. Fe:K2MnF4, Rb2Co1−xFexF4, Fe2+:Rb2CrCl4, and Fe2+:Rb2ZnCl4.  相似文献   

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