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首页> 外文期刊>Nature Communications >Charge-ordering cascade with spin-orbit Mott dimer states in metallic iridium ditelluride
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Charge-ordering cascade with spin-orbit Mott dimer states in metallic iridium ditelluride

机译:金属二碲化铱中具有自旋轨道Mott二聚体态的电荷排序级联

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摘要

Spin-orbit coupling results in technologically-crucial phenomena underlying magnetic devices like magnetic memories and energy-efficient motors. In heavy element materials, the strength of spin-orbit coupling becomes large to affect the overall electronic nature and induces novel states such as topological insulators and spin-orbit-integrated Mott states. Here we report an unprecedented charge-ordering cascade in IrTe2 without the loss of metallicity, which involves localized spin-orbit Mott states with diamagnetic Ir4+-Ir4+ dimers. The cascade in cooling, uncompensated in heating, consists of first order-type consecutive transitions from a pure Ir3(+) phase to Ir3+-Ir4(+) charge-ordered phases, which originate from Ir 5d to Te 5p charge transfer involving anionic polymeric bond breaking. Considering that the system exhibits superconductivity with suppression of the charge order by doping, analogously to cuprates, these results provide a new electronic paradigm of localized charge-ordered states interacting with itinerant electrons through large spin-orbit coupling.
机译:自旋轨道耦合导致诸如磁性存储器和节能电机之类的磁性装置的技术关键现象。在重元素材料中,自旋轨道耦合的强度变大,从而影响了总体电子性质,并引发了诸如拓扑绝缘体和自旋轨道积分莫特状态的新状态。在这里,我们报告了IrTe2中空前的电荷有序级联,而没有失去金属性,这涉及具有反磁性Ir4 + -Ir4 +二聚体的局部自旋轨道Mott态。冷却中的级联,没有加热补偿,由纯Ir3(+)相到Ir3 + -Ir4(+)电荷有序相的一阶类型连续跃迁组成,这是从Ir 5d到Te 5p电荷转移涉及阴离子聚合债券打破。考虑到该系统表现出超导电性,并且通过掺杂抑制了电荷序,类似于铜酸盐,这些结果提供了一种局部电荷序态通过大的自旋轨道耦合与流动电子相互作用的新电子范式。

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