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1.
通过实验和计算的方法研究了Mn2CoMxGa1-x 和Mn2CoMxAl1-x (M=Cr, Fe, Co)掺杂系列合金样品. 研究发现, 在共价作用的影响下, Fe和Co原子占A位, 使被取代的MnA (-2.1 μB)变成MnD (3.2 μB), 在最近邻的强交换作用下亚铁磁基体中形成了MnB-CoC-MnD局域铁磁性结构, 使分子磁矩的增量最高可达6.18 μB. Fe, Co 掺杂后建立同样的局域铁磁结构, 居里温度的变化趋势却不同. 实验观察到Mn2Co1+xAl1-x中掺杂容忍度高达x=0.64, 远高于在Mn2CoGa中(x=0.36)的结果; 以及随着Al的减少, 合金由B2有序向A2混乱转变等现象, 为共价作用对合金结构稳定的影响提供了证据. 磁测量中发现Cr掺杂后磁矩增量高达3.65 μB以及居里温度快速上升的反常现象, 意味着对占位规则的违背.  相似文献   

2.
基于第一性原理的计算方法研究了纯CeO_2、Co掺杂CeO_2和同时引入氧空位Vo和Co掺杂的CeO_2稀磁半导体体系.通过计算体系的能带结构和态密度,探讨了该体系磁性产生的机制.计算发现,纯CeO_2体系不具有磁性;没有氧空位Vo的Co掺杂CeO_2体系中,Co离子之间通过O原子发生超交换反铁磁耦合,体系无铁磁性;当氧空位Vo和Co离子同时存在于CeO_2体系中时,Co离子之间通过氧空位Vo发生铁磁耦合,该体系表现出铁磁性能.另外,由氧空位Vo诱导的Co离子之间的铁磁耦合不仅发生在紧邻的两个Co离子,而且可以扩展到几个原子距离的长度.计算结果证明了氧空位Vo诱导铁磁性耦合机制.本文工作将为CeO_2基稀磁半导体体系制备与磁学性质的研究提供支持.  相似文献   

3.
孙运斌  张向群  李国科  杨海涛  成昭华 《物理学报》2012,61(2):27503-027503
本文使用基于密度泛函理论的第一性原理方法研究了Co掺杂TiO2稀磁半导体中氧空位对体系能量和磁性的影响. 通过对总能量的计算发现当引入氧空位后近邻杂质体系能量高于均匀掺杂体系, 同时氧空位易在Co近邻位置富集. 进而发现氧空位的存在及其占位可以影响Co离子间的磁交换, 近邻Co离子体系下氧空位的引入使Co离子间的铁磁耦合减弱; 非近邻Co离子体系下, 底面氧空位使Co离子间呈反铁磁耦合而顶点氧空位使Co离子间呈铁磁耦合. 总之, 氧空位的存在对Co掺杂TiO2材料的能量及磁性都有较大影响.  相似文献   

4.
利用第一性原理研究Ni掺杂ZnO铁磁性起源   总被引:1,自引:0,他引:1       下载免费PDF全文
肖振林  史力斌 《物理学报》2011,60(2):27502-027502
采用基于密度泛函理论和局域密度近似的第一性原理分析了Ni掺杂ZnO磁性质.文中计算了8个不同几何结构的铁磁(FM)和反铁磁耦合能量,结果表明FM耦合更稳定.态密度结果显示Ni 3d 与O 2p发生杂化,导致费米能级附近电子态自旋极化.文中也分析了O空位对Ni掺杂ZnO铁磁性质的影响,O空位通过诱导电子调节FM耦合,从而稳定Ni掺杂ZnO铁磁性质,其强度足以引发室温铁磁性.通过Ni 3d能级耦合具体分析了Ni 掺杂ZnO铁磁性起源.另外,也分析了晶格应变对Ni掺杂ZnO FM耦合的影响. 关键词: 第一性原理 半导体 铁磁性 缺陷  相似文献   

5.
计算钛空位(VTi)和氧空位(VO)共存情况下未掺杂金红石TiO2的铁磁性.发现VO可以产生局域磁矩,由它引起的自旋极化比VTi引起的更加局域,导致VO之间的铁磁耦合作用弱于VTi之间的铁磁耦合作用.VTi之间的铁磁耦合在引入VO之后进一步加强.VO引入的电子调制两个分离的VTi之间的长程铁磁耦合.加入VTi之后,两个VO的磁矩猝灭,当VO的数量多于VTi的数量二倍时,VO会对磁矩有贡献.结果与实验发现的VO可以提高铁磁有序,并且总的磁矩会随着VO数量的增多而增加的结果符合很好.  相似文献   

6.
潘凤春  林雪玲  陈焕铭 《物理学报》2015,64(17):176101-176101
运用群论和分子轨道理论的方法, 系统地研究了非掺杂磁性半导体中阳离子空位产生磁矩的原因, 并用海森堡模型阐明了磁矩之间的交换耦合机理. 研究发现: 阳离子空位磁矩的大小与占据缺陷能级轨道的未配对电子数有关, 而缺陷能级的分布与空位的晶场对称性密切相关; 通过体系的反铁磁状态和铁磁状态下的能量差估算交换耦合系数J0, 交换耦合系数J0的正负可以用来预测磁矩之间的耦合是否为铁磁耦合:J0>0, 则表明磁矩之间的耦合为铁磁耦合, 反之为反铁磁耦合. 最后指出空位的几何构型发生畸变(John-Teller效应)的原因: 缺陷能级轨道简并度的降低与占据缺陷能级轨道的电子的数目有直接的关系.  相似文献   

7.
朱瑞 《计算物理》2007,24(6):693-697
讨论考虑洪特耦合的两带赫伯德模型得到的一维自旋轨道模型中自旋-轨道能隙的产生.运用SU(4)赝费米子表象下的平均场理论,计算求得价键序参数、准粒子激发谱能隙和自旋、轨道密度-密度关联函数随系统耦合参数变化的结果.随洪特耦合相互作用由零开始增强,系统激发谱能隙逐渐打开,并且系统在参数取值为J1/J2=1/3处由具有阻错的无序状态相变到自旋铁磁有序和轨道反铁磁有序的状态.  相似文献   

8.
氧空位对钴掺杂氧化锌半导体磁性能的影响   总被引:1,自引:0,他引:1       下载免费PDF全文
陈静  金国钧  马余强 《物理学报》2009,58(4):2707-2712
从实验和理论上阐述了氧空位对Co掺杂ZnO半导体磁性能的影响.采用磁控溅射法在不同的氧分压下制备了Zn095Co005O薄膜,研究了氧分压对薄膜磁性能的影响.实验结果表明,高真空条件下制备的Zn095Co005O薄膜具有室温铁磁性,提高氧分压后制备的薄膜铁磁性逐渐消失.第一性原理计算表明,在Co掺杂ZnO体系中引入氧空位有利于降低铁磁态的能量,铁磁态的稳定性与氧空位和Co之间的距离密切相关. 关键词: Co掺杂ZnO 稀磁半导体 第一性原理计算 氧空位缺陷  相似文献   

9.
本文基于第一性原理方法,对非金属元素(N)与过渡金属元素(Mo, Ru, Rh, Pd)掺杂SnO2的电子结构和磁学性质进行计算分析.结果表明:形成能与过渡金属原子半径密切相关,随着过渡金属原子半径的增加,形成能在降低,其中N-Mo掺杂体系形成能最低,故该体系最容易掺杂形成;能带结构分析表明,由于掺杂体系自旋向上/向下杂质能级的数量和分布均不对称,掺杂体系均有磁性产生;进一步探究态密度可知,体系产生磁性的原因是过渡金属原子和N原子之间产生p-d轨道杂化,最外层电子轨道上的空位及单电子相互耦合所导致.结果表明,由于掺杂原子的引入,SnO2体系产生磁性,并且掺杂体系呈现亚铁磁性,其中N-Rh掺杂体系的磁性最好,其磁矩为1.88μB,有望成为良好的稀磁半导体材料.  相似文献   

10.
郑玉龙  甄聪棉  马丽  李秀玲  潘成福  侯登录 《物理学报》2011,60(11):117502-117502
在Si-Al2O3复合薄膜中观察到室温铁磁性.Si的体积百分比为15 %的Si-Al2O3复合薄膜的磁性最强.Si的含量影响样品的磁有序,在样品中观察到了明显的磁畴.在不同气氛下,对样品进行快速热退火.退火样品的磁性测试结果的差别表明氧空位不是样品铁磁性的主要来源.我们认为铁磁性来源于Si与Al2O3基质界面之间的缺陷的磁耦合.改变Si的含量可以改变缺陷密度,从而控制铁磁耦合强度. 关键词: 2O3薄膜')" href="#">Al2O3薄膜 室温铁磁性 掺杂 交换相互作用  相似文献   

11.
The energetics and dynamics of electromigration of the oxygen vacancy is investigated with first-principles calculations and kinetic Monte Carlo methods. To simulate the charged oxygen vacancy under external fields within the first-principles approach, we introduce a slab model with electron-accepting dopants in the surface. The analysis of the density of states confirms that the oxygen vacancies are positively charged. When the external field is applied, the total energy of the slab linearly changes with respect to the position of the charged vacancy in the field direction, which allows for probing local permittivity around the vacancy site. The activation energy of vacancy migration is lowered along the field direction in a manner that the charge state of the vacancy is maintained along the migration path. Kinetic Monte Carlo simulations based on the first-principles inputs are also carried out and it is shown that the high-temperature condition is important for the fast redistribution of charged vacancies.  相似文献   

12.
The relationship between unpaired electron delocalization and nearest-neighbor atomic relaxations in the vacancies of diamond has been determined in order to understand the microscopic reason behind the neighboring atomic relaxation. The Density Functional Theory (DFT) cluster method is applied to calculate the single-electron wavefunction of the vacancy in different charge states. Depending on the charge and spin state of the vacancies, at outward relaxations, 84-90% of the unpaired electron densities are localized on the first neighboring atoms. The calculated spin localizations on the first neighboring atoms in the ground state of the negatively charged vacancy and in the spin quintet excited state of the neutral vacancy are in good agreement with Electron Paramagnetic Resonance (EPR) measurements. The calculated spin localization of the positively charged vacancy contrasts with the tentative assignment of the NIRIM-3 EPR signal to this center in (p-type) semiconductor diamond. The sign of the lattice relaxation in the diamond vacancy is explained based on the effect of electron delocalization on nearest-neighbor ion-ion screening, and also its effect on the bond length of neighboring atoms.  相似文献   

13.
Through first-principles calculations and thermodynamic analysis, we investigate the stable chemical potential range for BiAlO3 with R3c and Pm3m symmetry. The possible vacancies of BiAlO3 are mostly at their charged state rather than neutral state. And vacancies are more easily formed in R3c system than Pm3m system under same condition.  相似文献   

14.
Spin-polarized first-principles electronic structure and total energy calculations have been performed to better understand the magnetic properties of Co doped ZnO (ZnO:Co) with vacancies and Ga co-dopants. The paramagnetic state of ZnO:Co, in which Co ions lose their magnetic moments, has been found to be unstable. The total energy results show that acceptor-like Zn vacancies and donor-like Ga co-dopants render the anti-ferromagnetic (AFM) and ferromagnetic (FM) states to be more favorable, respectively. With O vacancies, ZnO:Co has been found to be in the weak FM state. These magnetic properties can be understood by the calculated O- and Zn-vacancies and Ga co-dopant induced changes of the electronic structure, which suggest that AFM and FM Co-Co couplings are mediated by O 2p-Co majority (↑)-spin 3d hybridized states in the valence band of ZnO and O-vacancy-derived p states or Ga sp states in the ZnO band gap, respectively. For ZnO:Co with Zn vacancies (Ga co-dopants) the AFM (FM) coupling outweighs the FM (AFM) coupling and results in the AFM (FM) state, while for ZnO:Co with O vacancies, both the FM and AFM couplings are enhanced by similar degrees and result in the weak FM state. This study reveals a competition between FM and AFM couplings in ZnO:Co with vacancies and Ga co-dopants, the detailed balancing between which determines the magnetic properties of these materials.  相似文献   

15.
姜良宝  刘宇  左思斌  王文军 《中国物理 B》2015,24(2):27503-027503
Ferromagnetism is investigated in high-quality Cu-doped A1 N single crystal whiskers.The whiskers exhibit roomtemperature ferromagnetism with a magnetic moment close to the results from first-principles calculations.High crystallinity and low Cu concentrations are found to be indispensable for high magnetic moments.The difference between the experimental and theoretical moment values is explored in terms of the influence of nitrogen vacancies.The calculated results demonstrate that nitrogen vacancies can reduce the magnetic moments of Cu atom.  相似文献   

16.
The negatively charged nitrogen-vacancy (NV(-)) center in diamond is considered to be one of the most promising solid state systems for quantum information applications. Excited states of the NV(-) center play a center role in the proposed applications. Using a combination of first-principles calculations and vibronic interaction model analysis, we establish the presence of a dynamic Jahn-Teller effect in the (3)E excited state. The calculated temperature-dependent dephasing rate for the zero phonon line as well as the splitting of the first two vibronic states are in good agreement with experiment.  相似文献   

17.
Using first-principles calculations, we investigated the electronic and magnetic properties of Mn-doped, Fe-doped, and Co-doped diamond. It is found that the Mn-, Fe-, and Co-doped diamond are stabilized in ferromagnetic configurations. The origins of the magnetic ordering are explained successfully by the phenomenological band coupling model based on the p–d and d–d level repulsions between the dopant ions and host elements. According to Heisenberg model, high Curie temperature may be expected for Mn-, Fe-, and Co-doped diamond if there are no native defects or other impurities.  相似文献   

18.
Structure and energy related properties of neutral and charged vacancies on relaxed diamond (1 0 0) (2 × 1) surface were investigated by means of density functional theory. Calculations indicate that the diffusion of a single vacancy from the top surface layer to the second layer is not energetically favored. Analysis of energies in charged system shows that neutral state is most stable on diamond (1 0 0) (2 × 1) surface. The multiplicity of possible states can exist on diamond (1 0 0) surface in dependence on the surface Fermi level, which supports that surface diffusion of a vacancy is mediated by the change of vacancy charge states. Analysis of density of states shows surface vacancy can be effectively measured by photoelectricity technology.  相似文献   

19.
Using first-principles density functional calculations, we have investigated the electronic structures of Ti-doped ZnO (Ti is in 4+ oxidation state) with and without oxygen vacancy. The ferromagnetic property is identified in the presence of oxygen vacancy despite Ti being nonmagnetic in its natural phase. The ferromagnetism originates from the charge transferring from donor derived-defect band to unoccupied Ti-3d states and the hybridization between Ti-3d and O-2p band near the Fermi level. On increasing the oxygen vacancy concentration, a transition from a long-ranged magnetic order to a short-ranged interaction is found and the oxygen vacancies prefer to distribute non-uniformly in Ti-doped ZnO.  相似文献   

20.
Using first-principles approach, we theoretically study the effect of anion/cation vacancies on structural and electro-magnetic properties of zigzag AlN nanoribbons (ZAlNNRs). Calculations were performed using a full spin-polarized method within the density functional theory (DFT). Our findings shed light on how the edge states combined with vacancy engineering can affect electro-magnetic properties of ZAlNNRs. We found that depending on the nature and number of vacancies, ZAlNNRs can design as half-metal or semiconductor. Our results reveal a significant amount of spin magnetic moment for ZAlNNR with Al vacancies (VAl). These results may open new applications of AlN nano-materials in spintronics.  相似文献   

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