论文标题

钛酸锶中的氧空位:DFT+DMFT研究

Oxygen Vacancies in Strontium Titanate: a DFT+DMFT study

论文作者

Souto-Casares, Jaime, Spaldin, Nicola A., Ederer, Claude

论文摘要

我们使用密度功能理论和动力学平均场理论(DFT+DMFT)的结合,特别研究了空位位点相关性对电子特性的影响,我们解决了泰坦酸盐中氧空位的性质的长期问题。我们的方法使用最小的低能电子子空间,包括ti-$ t_ {2g} $轨道以及额外的以空缺为中心的浮力功能,并提供了一个直观且物理上透明的框架,以研究本地电子电子交互对氧气量的多余电荷的影响。我们使用受约束的随机相位近似估算筛选的相互作用参数的强度,并为空位轨道找到较大的Hubbard $ U $参数。我们的主要发现与以前的实验和计算结果核对,是基态是具有双重占用局部缺陷状态的状态,或者是具有单一占用空缺的状态,而一个电子转移到传导带。这两个竞争状态之间的平衡取决于空位和TI位点的相互作用强度,以及整个空缺的TI-TI距离。最后,我们将Srtio $ _3 $中空位掺杂的情况与通过LA替代的兴奋剂进行了对比,并证明了后者通过简单的刚带图片进行了很好的描述。

We address the long-standing question of the nature of oxygen vacancies in strontium titanate, using a combination of density functional theory and dynamical mean-field theory (DFT+DMFT) to investigate in particular the effect of vacancy-site correlations on the electronic properties. Our approach uses a minimal low-energy electronic subspace including the Ti-$t_{2g}$ orbitals plus an additional vacancy-centered Wannier function, and provides an intuitive and physically transparent framework to study the effect of the local electron-electron interactions on the excess charge introduced by the oxygen vacancies. We estimate the strength of the screened interaction parameters using the constrained random phase approximation and find a sizeable Hubbard $U$ parameter for the vacancy orbital. Our main finding, which reconciles previous experimental and computational results, is that the ground state is either a state with double occupation of the localized defect state or a state with a singly-occupied vacancy and one electron transferred to the conduction band. The balance between these two competing states is determined by the strength of the interaction both on the vacancy and the Ti sites, and on the Ti-Ti distance across the vacancy. Finally, we contrast the case of vacancy doping in SrTiO$_3$ with doping via La substitution, and show that the latter is well described by a simple rigid-band picture.

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