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Polymorphic Spin, Charge, and Lattice Waves in Vanadium Ditelluride

Title
Polymorphic Spin, Charge, and Lattice Waves in Vanadium Ditelluride
Authors
Won D.Kiem D.H.Cho H.Kim D.Kim Y.Jeong M.Y.Seo C.Kim J.Park J.-G.Han M.J.Yang H.Cho S.
Ewha Authors
조수연
SCOPUS Author ID
조수연scopus
Issue Date
2020
Journal Title
Advanced Materials
ISSN
0935-9648JCR Link
Citation
Advanced Materials vol. 32, no. 11
Keywords
charge density wavespolymorphismtransition metal dichalcogenidesvanadium ditelluride
Publisher
Wiley-VCH Verlag
Indexed
SCIE; SCOPUS WOS scopus
Document Type
Article
Abstract
Lattice distortion, spin interaction, and dimensional crossover in transition metal dichalcogenides (TMDs) have led to intriguing quantum phases such as charge density waves (CDWs) and 2D magnetism. However, the combined effect of many factors in TMDs, such as spin–orbit, electron–phonon, and electron–electron interactions, stabilizes a single quantum phase at a given temperature and pressure, which restricts original device operations with various quantum phases. Here, nontrivial polymorphic quantum states, CDW phases, are reported in vanadium ditelluride (VTe2) at room temperature, which is unique among various CDW systems; the doping concentration determines the formation of either of the two CDW phases in VTe2 at ambient conditions. The two CDW polymorphs show different antiferromagnetic spin orderings in which the vanadium atoms create two different stripe-patterned spin waves. First-principles calculations demonstrate that the magnetic ordering is critically coupled with the corresponding CDW in VTe2, which suggests a rich phase diagram with polymorphic spin, charge, and lattice waves all coexisting in a solid for new conceptual quantum state-switching device applications. © 2020 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
DOI
10.1002/adma.201906578
Appears in Collections:
공과대학 > 화공신소재공학과 > Journal papers
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