Band Engineering of Dirac Semimetals Using Charge Density Waves
ORAL · Invited
Abstract
[1] Vergniory, Maia G., et al. "All Topological Bands of All Stoichiometric Materials." arXiv preprint arXiv:2105.09954(2021).
[2] Lei, Shiming, et al. "Band Engineering of Dirac Semimetals Using Charge Density Waves." Advanced Materials (2021): 2101591.
[3] Lei, Shiming, Audrey Saltzman, and Leslie M. Schoop. "Complex magnetic phases enriched by charge density waves in the topological semimetals GdSb x Te 2− x− δ." Physical Review B 103.13 (2021): 134418.
[4] Singha, Ratnadwip, et al. "Evolving Devil's staircase magnetization from tunable charge density waves in nonsymmorphic Dirac semimetals." Advanced Materials 33.41 (2021): 2103476.
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Publication: Lei, Shiming, et al. "Charge density waves and magnetism in topological semimetal candidates GdSbxTe2− x− δ." Advanced Quantum Technologies 2.10 (2019): 1900045.<br>Lei, Shiming, et al. "Band Engineering of Dirac Semimetals Using Charge Density Waves." Advanced Materials (2021): 2101591.<br>Lei, Shiming, Audrey Saltzman, and Leslie M. Schoop. "Complex magnetic phases enriched by charge density waves in the topological semimetals GdSb x Te 2− x− δ." Physical Review B 103.13 (2021): 134418.<br>Singha, Ratnadwip, et al. "Evolving Devil's staircase magnetization from tunable charge density waves in nonsymmorphic Dirac semimetals." Advanced Materials 33.41 (2021): 2103476.
Presenters
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Leslie M Schoop
Princeton University
Authors
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Leslie M Schoop
Princeton University