凝聚态物理
随机性
金属-绝缘体过渡
磁电阻
电子
电子定域函数
库仑
安德森本地化
离子
材料科学
电子能带结构
可变距离跳频
格子(音乐)
态密度
热传导
化学
物理
电阻率和电导率
量子力学
磁场
数学
统计
声学
作者
Daichi Oka,Yasushi Hirose,Shoichiro Nakao,Tomoteru Fukumura,Tetsuya Hasegawa
标识
DOI:10.1038/s42005-021-00777-z
摘要
Abstract Anderson localization derived from randomness plays a crucial role in various kinds of phase transitions. Although treated as a free variable parameter in theory, randomness in electronic materials is hard to control experimentally owing to the coexisting Coulomb interaction. Here we demonstrate that the intrinsic anion disorder in a mixed-anion system of SrNbO 2 N induces a significant random potential that overwhelms the Coulomb potential while maintaining the lattice structure. A metal-to-insulator transition is triggered by a chemical modulation of the electron density where the critical electron density is more than three orders of magnitude greater than that predicted by the well-known Mott criterion. The localized electrons show characteristic electrical properties such as temperature-dependent multiple crossovers of conduction mechanisms and a positive magnetoresistance above 50% at low temperature. The large magnetoresistance is attributed to wave-function shrinkage of the localized states and clearly visualizes the anisotropy in the band structure, which indicates a compatibility of the periodicity and randomness.
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