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Spin-orbit coupling induced semi-metallic state in the 1/3 hole-doped hyper-kagome Na3Ir3O8

机译:自旋轨道耦合在1/3空穴掺杂的高kagome Na3Ir3O8中诱导半金属态

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摘要

The complex iridium oxide Na3Ir3O8 with a B-site ordered spinel structure was synthesized in single crystalline form, where the chiral hyper-kagome lattice of Ir ions, as observed in the spin-liquid candidate Na4Ir3O8, was identified. The average valence of Ir is 4.33+ and, therefore, Na3Ir3O8 can be viewed as a doped analogue of the hyper-kagome spin liquid with Ir4+. The transport measurements, combined with the electronic structure calculations, indicate that the ground state of Na3Ir3O8 is a low carrier density semi-metal. We argue that the semi-metallic state is produced by a competition of the molecular orbital splitting of t2g orbitals on Ir3 triangles with strong spin-orbit coupling inherent to heavy Ir ions.
机译:以单晶形式合成了具有B位有序尖晶石结构的复合氧化铱Na3Ir3O8,其中鉴定了在自旋液体候选Na4Ir3O8中观察到的Ir离子的手性高kagome晶格。 Ir的平均价为4.33+,因此,Na3Ir3O8可以看作是Ir 4 + 的高kagome自旋液体的掺杂类似物。传输测量结果与电子结构计算相结合,表明Na3Ir3O8的基态是一种低载流子密度的半金属。我们认为,半金属状态是由Ir3三角形上的t2g轨道的分子轨道分裂与重Ir离子固有的强自旋轨道耦合竞争而产生的。

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