Charge density waves and degenerate modes in exfoliated monolayer 2H-TaS2

Charge density waves spontaneously breaking lattice symmetry through periodic lattice distortion, and electron–electron and electron–phonon inter­actions, can lead to a new type of electronic band structure. Bulk 2H-TaS2 is an archetypal transition metal dichalcogenide supporting charge density wave...

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Veröffentlicht in:IUCrJ 2020-09, Vol.7 (5), p.913-919
Hauptverfasser: Zhang, Duan, Wu, Yecun, Yu-Hsin, Su, Ming-Chien Hsu, Cormac Ó Coileáin, Cho, Jiung, Choi, Miri, Byong Sun Chun, Guo, Yao, Ching-Ray, Chang, Han-Chun, Wu
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Sprache:eng
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Zusammenfassung:Charge density waves spontaneously breaking lattice symmetry through periodic lattice distortion, and electron–electron and electron–phonon inter­actions, can lead to a new type of electronic band structure. Bulk 2H-TaS2 is an archetypal transition metal dichalcogenide supporting charge density waves with a phase transition at 75 K. Here, it is shown that charge density waves can exist in exfoliated monolayer 2H-TaS2 and the transition temperature can reach 140 K, which is much higher than that in the bulk. The degenerate breathing and wiggle modes of 2H-TaS2 originating from the periodic lattice distortion are probed by optical methods. The results open an avenue to investigating charge density wave phases in two-dimensional transition metal dichalcogenides and will be helpful for understanding and designing devices based on charge density waves.
ISSN:2052-2525
2052-2525
DOI:10.1107/S2052252520011021