Correlation Driven Topological Insulator to Weyl Semimetal Transition in Actinide System UNiSn
ORAL
Abstract
We use a modern electronic structure method combining density functional theory of band electrons with dynamical self-energies of strongly correlated states to predict that two well known phases of actinide compound UNiSn, a paramagnetic semiconducting and antiferromagnetic metallic, correspond to Topological Insulator (TI) and Weyl semimetal (WSM) phases of topological quantum matter. Thus, the famous unconventional insulator-metal transition observed in UNiSn is also a TI to WSM transition. Driven by a strong hybridization between U f-electron multiplet transitions and band electrons, multiple energy gaps open up in the single-particle spectrum whose topological physics is revealed using the calculation of Z2 invariants in the strongly correlated regime. A simplified physical picture of these phenomena is provided based on a periodic Anderson model of strong correlations and multiple band inversions that occur in this fascinating compound. Studying the topology of interacting electrons reveals interesting opportunities for finding new exotic phase transitions in strongly correlated systems.
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Presenters
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Sergey Savrasov
Physics, UC Davis, University of California, Davis, University of california, Davis
Authors
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Vsevolod Ivanov
Physics, UC Davis, University of California, Davis
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Sergey Savrasov
Physics, UC Davis, University of California, Davis, University of california, Davis