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首页> 外文期刊>JETP Letters >Ab initio probing of the electronic band structure and Fermi surface of fluorine-doped WO _3 as a novel low-T _C superconductor
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Ab initio probing of the electronic band structure and Fermi surface of fluorine-doped WO _3 as a novel low-T _C superconductor

机译:从头开始研究掺氟WO _3作为新型低T _C超导体的电子能带结构和费米表面

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Ab initio calculations were performed to investigate the electronic structure and the Fermi surface of the newly discovered low-temperature superconductor: fluorine-doped WO _3. We find that F doping provides the transition of the insulating tungsten trioxide into a metallic-like phase WO _(3 - x)F _x, where the near-Fermi states are formed mainly from W 5d with admixture of O 2p orbitals. The cooperative effect of fluorine additives in WO _3 consists in change of electronic concentration as well as the lattice constant. At probing their influence on the near-Fermi states separately, the dominant role of the electronic factor for the transition of tungsten oxyfluoride into superconducting state was established. The volume of the Fermi surface gradually increases with the increase of the doping. In the sequence WO 3 → WO _(2. 5)F _(0.5) the effective atomic charges of W and O ions decrease, but much less, than it is predicted within the idealized ionic model-owing to presence of the covalent interactions W-O and W-F.
机译:进行了从头算计算,以研究新发现的低温超导体:掺氟WO _3的电子结构和费米表面。我们发现,F掺杂提供了绝缘性三氧化钨向金属样相WO _(3-x)F _x的过渡,其中近费米态主要由W 5d与O 2p轨道的混合形成。 WO _3中氟添加剂的协同作用在于电子浓度的变化以及晶格常数。在分别探究它们对近费米态的影响时,确立了电子因素对氟氧化钨向超导态转变的主导作用。费米表面的体积随着掺杂的增加而逐渐增加。在序列WO 3→WO _(2。5)F _(0.5)中,由于存在共价相互作用,W和O离子的有效原子电荷减少,但比理想化离子模型中预测的少得多WO和WF。

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