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Subband structure of a two-dimensional electron gas formed at the polar surface of the strong spin-orbit perovskite KTaO3

机译:在强自旋钙钛矿KTaO3的极性表面形成的二维电子气的子带结构

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摘要

We demonstrate the formation of a two-dimensional electron gas (2DEG) at the (100) surface of the 5d transition-metal oxide KTaO3. From angle-resolved photoemission, we find that quantum confinement lifts the orbital degeneracy of the bulk band structure and leads to a 2DEG composed of ladders of subband states of both light and heavy carriers. Despite the strong spin-orbit coupling, our measurements provide a direct upper bound for the potential Rashba spin splitting of only Delta k(parallel to) similar to 0.02 angstrom(-1) at the Fermi level. The polar nature of the KTaO3(100) surface appears to help mediate the formation of the 2DEG as compared to nonpolar SrTiO3(100).
机译:我们演示了在5d过渡金属氧化物KTaO3的(100)表面形成二维电子气(2DEG)。从角度分辨的光发射中,我们发现量子约束提升了体带结构的轨道简并性,并导致了由轻载子和重载子带状态的阶梯组成的2DEG。尽管有很强的自旋轨道耦合,我们的测量仍提供了仅Delta k(平行)类似于费米能级0.02埃(-1)的潜在Rashba自旋分裂的直接上限。与非极性SrTiO3(100)相比,KTaO3(100)表面的极性似乎有助于介导2DEG的形成。

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