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arxiv: 1404.6814 · v4 · pith:DJDDD7XRnew · submitted 2014-04-27 · ❄️ cond-mat.str-el

Non-Kondo-like Electronic Structure in the Correlated Rare-Earth Hexaboride YbB₆

classification ❄️ cond-mat.str-el
keywords topologicalinsulatorkondorare-earthcorrelatedelectronicfermihexaboride
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We present angle-resolved photoemission studies on the rare-earth hexaboride YbB$_6$, which has recently been predicted to be a topological Kondo insulator. Our data do not agree with the prediction and instead show that YbB$_6$ exhibits a novel topological insulator state in the absence of a Kondo mechanism. We find that the Fermi level electronic structure of YbB$_6$ has three 2D Dirac cone like surface states enclosing the Kramers' points, while the f-orbital which would be relevant for the Kondo mechanism is $\sim1$ eV below the Fermi level. Our first-principles calculation shows that the topological state which we observe in YbB$_6$ is due to an inversion between Yb $d$ and B $p$ bands. These experimental and theoretical results provide a new approach for realizing novel correlated topological insulator states in rare-earth materials.

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