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Anisotropic lattice strain induced by the enhanced electronic hybridization in SrTiO_3

机译:SrTiO_3中增强电子杂交诱导的各向异性晶格应变

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We introduce enhanced hybridization of Ti 3d-O 2p electronic states by applying an inhomogeneous electric field to a perovskite oxide, SrTiO3, which leads to lattice deformation through electrostriction and the converse flexoelectric effect. However, unlike most studies revealing lattice responses to dipolar polarization, the enhanced electronic hybridization introduced in SrTiO3 is not strong enough to compensate local repulsions and gives rise to the off-centered Ti displacement. This is consistent with the fact that SrTiO3 has a small vibronic coupling constant compared to other ferroelectric materials. In situ time-dependent X-ray diffraction studies reveal lattice relaxation. Band structures and electronic hybridization play important roles in lattice relaxation, which is different from the relaxation of metals where the carrier concentration may be dominant. Our results provide insight into the coupling behaviors between the lattice and electronic hybridization, considering both static and dynamic aspects. Published by AIP Publishing.
机译:我们通过向钙钛矿氧化物SrTiO3施加不均匀电场来引入增强的Ti 3d-O 2p电子态杂化作用,该电场通过电致伸缩和相反的柔电效应导致晶格变形。但是,与大多数研究揭示晶格对偶极极化的反应不同,在SrTiO3中引入的增强电子杂交能力不足以补偿局部排斥力,并引起偏心的Ti位移。这与SrTiO3与其他铁电材料相比具有较小的振动耦合常数这一事实是一致的。原位时间依赖性X射线衍射研究表明晶格弛豫。带结构和电子杂交在晶格弛豫中起重要作用,这不同于载流子浓度可能占主导的金属弛豫。考虑到静态和动态方面,我们的结果提供了对晶格和电子杂交之间耦合行为的深入了解。由AIP Publishing发布。

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