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- W2964226323 abstract "Abstract Recent demonstrations of controlled switching between different ordered macroscopic states by impulsive electromagnetic perturbations in complex materials have opened some fundamental questions on the mechanisms responsible for such remarkable behavior. Here we experimentally address the question of whether two-dimensional (2D) Mott physics can be responsible for unusual switching between states of different electronic order in the layered dichalcogenide 1T-TaS 2 , or it is a result of subtle inter-layer “orbitronic” re-ordering of its stacking structure. We report on in-plane (IP) and out-of-plane (OP) resistance switching by current-pulse injection at low temperatures. Elucidating the controversial theoretical predictions, we also report on measurements of the anisotropy of the electrical resistivity Equation missing<!-- image only, no MathML or LaTex -->Equation missing<!-- image only, no MathML or LaTex -->below room temperature. From the T-dependence of ρ ⊥ and ρ || , we surmise that the resistivity is more consistent with collective motion than single particle diffusive or band-like transport. The relaxation dynamics of the metastable state for both IP and OP electron transport are seemingly governed by the same mesoscopic quantum re-ordering process. We conclude that 1T-TaS 2 shows resistance switching arising from an interplay of both IP and OP correlations." @default.
- W2964226323 created "2019-07-30" @default.
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- W2964226323 creator A5043574885 @default.
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- W2964226323 date "2017-04-13" @default.
- W2964226323 modified "2023-10-17" @default.
- W2964226323 title "Three-dimensional resistivity and switching between correlated electronic states in 1T-TaS2" @default.
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- W2964226323 doi "https://doi.org/10.1038/srep46048" @default.
- W2964226323 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/5390263" @default.
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