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Topological quantum chemistry

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arxiv 1703.02050 v2 pith:VU2T5ZSE submitted 2017-03-06 cond-mat.mes-hall cond-mat.mtrl-scicond-mat.str-elhep-th

classification cond-mat.mes-hallcond-mat.mtrl-scicond-mat.str-elhep-th
keywords bandtopologicaldescriptiontheorychemistryfundamentallocalnontrivial
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The past decade's apparent success in predicting and experimentally discovering distinct classes of topological insulators (TIs) and semimetals masks a fundamental shortcoming: out of 200,000 stoichiometric compounds extant in material databases, only several hundred of them are topologically nontrivial. Are TIs that esoteric, or does this reflect a fundamental problem with the current piecemeal approach to finding them? To address this, we propose a new and complete electronic band theory that highlights the link between topology and local chemical bonding, and combines this with the conventional band theory of electrons. Topological Quantum Chemistry is a description of the universal global properties of all possible band structures and materials, comprised of a graph theoretical description of momentum space and a dual group theoretical description in real space. We classify the possible band structures for all 230 crystal symmetry groups that arise from local atomic orbitals, and show which are topologically nontrivial. We show how our topological band theory sheds new light on known TIs, and demonstrate the power of our method to predict a plethora of new TIs.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Pressure induced electronic structure transformation of topological semimetal

    cond-mat.mtrl-sci 2019-08 conditional novelty 6.0 of 10

    First-principles calculations show YH3 hosts a pressure-tunable pseudo nodal surface semimetal that transitions through a shrinking nodal ring to a trivial insulator above 31 GPa.

  2. The Dirac nodal line network in non-symmorphic rutile semimetal RuO$_2$

    cond-mat.mes-hall 2019-08 reject novelty 5.0 of 10

    Micro-ARPES resolves two predicted Dirac nodal lines in RuO2 and reveals a third band crossing along XR that anchors a flat-band surface state.

  3. Symmetry, microscopy and spectroscopy signatures of altermagnetism

    cond-mat.mtrl-sci 2025-06 unverdicted

    A review of the symmetry, microscopic origin, and detection of altermagnetism, a collinear magnetic phase with alternating spin polarization in momentum space.

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