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Nano-infrared imaging of metal insulator transition in few-layer 1T-TaS2

Authors :
Songtian S. Zhang
Anjaly Rajendran
Sang Hoon Chae
Shuai Zhang
Tsai-Chun Pan
James C. Hone
Cory R. Dean
D. N. Basov
Source :
Nanophotonics.
Publication Year :
2023
Publisher :
Walter de Gruyter GmbH, 2023.

Abstract

Among the family of transition metal dichalcogenides, 1T-TaS2 stands out for several peculiar physical properties including a rich charge density wave phase diagram, quantum spin liquid candidacy and low temperature Mott insulator phase. As 1T-TaS2 is thinned down to the few-layer limit, interesting physics emerges in this quasi 2D material. Here, using scanning near-field optical microscopy, we perform a spatial- and temperature-dependent study on the phase transitions of a few-layer thick microcrystal of 1T-TaS2. We investigate encapsulated air-sensitive 1T-TaS2 prepared under inert conditions down to cryogenic temperatures. We find an abrupt metal-to-insulator transition in this few-layer limit. Our results provide new insight in contrast to previous transport studies on thin 1T-TaS2 where the resistivity jump became undetectable, and to spatially resolved studies on non-encapsulated samples which found a gradual, spatially inhomogeneous transition. A statistical analysis suggests bimodal high and low temperature phases, and that the characteristic phase transition hysteresis is preserved down to a few-layer limit.

Details

ISSN :
21928614 and 21928606
Database :
OpenAIRE
Journal :
Nanophotonics
Accession number :
edsair.doi...........5ffecc962790c14b997241c903b69b73
Full Text :
https://doi.org/10.1515/nanoph-2022-0750