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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Electronic structure and total energy of SrBi/sub 2/Ta/sub 2/O/sub 9/ by first-principles calculations
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Electronic structure and total energy of SrBi/sub 2/Ta/sub 2/O/sub 9/ by first-principles calculations

机译:通过第一性原理计算得出SrBi / sub 2 / Ta / sub 2 / O / sub 9 /的电子结构和总能量

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摘要

The results of first-principles calculations of the electronic structure and the total energy in strontium bismuth tantalate, SrBi/sub 2/Ta/sub 2/O/sub 9/ (SBT), with respect to Ta ion displacements, are reported. In pseudotetragonal SBT and its solid solutions, bismuth oxide, [(Bi/sub 2/O/sub 2/)/sup 2+/], layers alternate with double strontium tantalate, [(Sr/sub 2/Ta/sub 2/O/sub 7/)/sup 2-/], perovskite layers. The dual crystal chemistries give rise to dual electronic and dielectric properties that are anisotropic. The calculated electronic structure of SBT indicates that the absence of an energy gap in the vicinity of the Fermi level stems from lowering of the Sr orbital energies due to its lower electronegativity relative to Ta and Bi ions, and significant hybridization between Sr, Ta, Bi and O ions. Although charge carriers in the "semimetallic" (Sr/sub 2/Ta/sub 2/O/sub 7/)/sup 2$/sublattice have a large effective mass, the (Bi/sub 2/O/sub 2/)/sup 2+/ sublattice is insulating. The calculated partial and total densities of states provide alternative but plausible explanations to the reported spectroscopic data. The total energy anisotropy indicates that multiple phase transformations, and anisotropies in the polarization retention and coercive field (E/sub c/), are expected. Explanations of the fatigue-free behavior and leakage current (J/sub L/) and its anisotropy of SBT, and comments on optical transparency and calculating methods for band structure of SBT are forwarded.
机译:报道了关于钽离子位移的钽铁酸锶锶电子结构和总能量的第一性原理计算结果,即SrBi / sub 2 / Ta / sub 2 / O / sub 9 /(SBT)。在伪四方SBT及其固溶体中,氧化铋[(Bi / sub 2 / O / sub 2 /)/ sup 2 + /]的层与双钽酸锶交替出现,[(Sr / sub 2 / Ta / sub 2 / O / sub 7 /)/ sup 2- /],钙钛矿层。双晶化学产生各向异性的双电子和介电性质。计算得出的SBT电子结构表明,费米能级附近没有能隙,这是由于Sr轨道能量相对于Ta和Bi离子较低,以及Sr,Ta,Bi之间的显着杂化,导致Sr轨道能量降低和O离子。尽管“半金属”(Sr / sub 2 / Ta / sub 2 / O / sub 7 /)/ sup 2 $ /亚格中的电荷载流子具有较大的有效质量,但(Bi / sub 2 / O / sub // 2 /) / sup 2 + /子晶格是绝缘的。计算出的部分和全部状态密度为所报告的光谱数据提供了替代但合理的解释。总能量各向异性表明,期望有多个相变以及极化保持和矫顽场中的各向异性(E / sub c /)。对SBT的无疲劳行为和泄漏电流(J / sub L /)及其各向异性进行了解释,并对SBT的光学透明性和能带结构的计算方法进行了评论。

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