| Literature DB >> 34250452 |
Sugata Chowdhury1, Heather M Hill2, Albert F Rigosi2, Andrew Briggs3, Helmuth Berger4, David B Newell2, Angela R Hight Walker2, Francesca Tavazza2.
Abstract
Tantalum diselenide (TaSe2) is a metallic transition metal dichalcogenide whose structure and vibrational behavior strongly depend on temperature and thickness, and this behavior includes the emergence of charge density wave (CDW) states at very low temperatures. In this work, observed Raman modes for mono- and bilayer are described across several spectral regions and compared to those seen in the bulk case. These modes, which include an experimentally observed forbidden Raman mode and low-frequency CDWs, are then matched to corresponding vibrations predicted by density functional theory (DFT). The reported match between experimental and computational results supports the presented vibrational visualizations of these modes. Support is also provided by experimental phonons observed in additional Raman spectra as a function of temperature and thickness. These results highlight the importance of understanding CDWs since they are likely to play a fundamental role in the future realization of solid-state quantum information platforms based on nonequilibrium phenomena.Entities:
Keywords: Raman spectroscopy; charge density waves; density functional theory; forbidden mode; transition metal dichalcogenides
Year: 2021 PMID: 34250452 PMCID: PMC8268966 DOI: 10.1021/acsanm.0c03222
Source DB: PubMed Journal: ACS Appl Nano Mater ISSN: 2574-0970