Experimental observation of metallic states with different dimensionality in a quasi-1D charge density wave compound

P. Rezende-Gonçalves, M. Thees, J. Rojas Castillo, D. Silvera-Vega,R. L. Bouwmeester,E. David, A. Antezak, A. J. Thakur,F. Fortuna,P. Le Fèvre, M. Rosmus,N. Olszowska, R. Magalhães-Paniago,A. C. Garcia-Castro,P. Giraldo-Gallo,E. Frantzeskakis,A. F. Santander-Syro

arXiv (Cornell University)(2023)

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摘要
TaTe$_4$ is a quasi-1D tetrachalcogenide that exhibits a CDW instability caused by a periodic lattice distortion. Recently, pressure-induced superconductivity has been achieved in this compound, revealing a competition between these different ground states and making TaTe$_4$ very interesting for fundamental studies. Although TaTe$_4$ exhibits CDW ordering below 475 K, transport experiments have reported metallic behavior with a resistivity plateau at temperatures lower than 10 K. In this paper, we study the electronic structure of TaTe$_4$ using a combination of high-resolution angle-resolved photoemission spectroscopy and density functional calculations. Our results reveal the existence of the long-sought metallic states. These states exhibit mixed dimensionality, while some of them might have potential topological properties.
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metallic states
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