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Identification of a monoclinic metallic state in VO2 from a modified first-principles approach

机译:从改进的第一原理方法识别VO2中的单斜态金属状态

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Metal-insulator transition (MIT) underlies many remarkable and technologically important phenomena in VO2. Even though its monoclinic structure had before been the reserve of the insulating state, recent experiments have observed an unexpected monoclinic metallic state. Here, we use a modified approach combining first-principles calculations with orbital-biased potentials to reproduce the correct stability ordering and electronic structures of different phases of VO2. We identify a ferromagnetic monoclinic metal that is likely to be the experimentally observed mysterious metastable state. Furthermore, the calculations show that an isostructural insulator-metal electronic transition is followed by the lattice distortion from the monoclinic structure to the rutile one. These results not only explain the experimental observations of the monoclinic metallic state and the decoupled structural and electronic transitions of VO2, but also provide a useful understanding for the metal-insulator transition in other strongly correlated d electron systems.
机译:金属绝缘体过渡(麻省理工学院)在VO2中解脱出许多显着和技术上重要的现象。尽管在绝缘状态的储备之前,但最近的实验仍然观察到意外的单晶体状态。这里,我们使用与轨道偏置电位的第一原理计算结合的修改方法来再现VO2的不同阶段的正确稳定性排序和电子结构。我们识别可能是实验观察到神秘的亚稳态的铁磁性单岩金属。此外,计算表明,从单斜面结构晶格变形之后是晶格变形到金红石。这些结果不仅解释了单岩金属状态的实验观察和VO2的解耦结构和电子转变,而且还提供了对其他强相关的D电子系统中的金属绝缘体过渡的有用理解。

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