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Luis Elcoro

Researcher at University of the Basque Country

Publications -  86
Citations -  4955

Luis Elcoro is an academic researcher from University of the Basque Country. The author has contributed to research in topics: Superspace & Topological insulator. The author has an hindex of 25, co-authored 81 publications receiving 3398 citations. Previous affiliations of Luis Elcoro include Universidad Pública de Navarra & Oak Ridge National Laboratory.

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Topological quantum chemistry

TL;DR: A complete electronic band theory is proposed, which builds on the conventional band theory of electrons, highlighting the link between the topology and local chemical bonding and can be used to predict many more topological insulators.
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A complete catalogue of high-quality topological materials

TL;DR: Using a recently developed formalism called topological quantum chemistry, a high-throughput search of ‘high-quality’ materials in the Inorganic Crystal Structure Database is performed and it is found that more than 27 per cent of all materials in nature are topological.
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The (High Quality) Topological Materials In The World

TL;DR: In this article, the authors use TQC to find the topological stoichiometric non-magnetic, "high-quality'' materials in the world, and develop several code additions to VASP which can compute all characters of all symmetries at all high symmetry points in the Brillouin Zone (BZ).
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High-throughput calculations of magnetic topological materials

TL;DR: A high-throughput search for magnetic topological materials based on first-principles calculations is performed and several materials display previously unknown topological phases, including symmetry-indicated magnetic semimetals, three-dimensional anomalous Hall insulators and higher-order magneticSemimetals.
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Symmetry-Based Computational Tools for Magnetic Crystallography

TL;DR: In recent years, two important advances have opened new doors for the characterization and determination of magnetic structures as mentioned in this paper, and the subsequent development of a series of computer tools that allow a more efficient and comprehensive application of magnetic symmetry, both commensurate and incommensurate.