One-Dimensional Luttinger Liquids in a Two-Dimensional Moiré Lattice
arXiv:2109.04637 · doi:10.1038/s41586-022-04514-6
Abstract
The Luttinger liquid (LL) model of one-dimensional (1D) electronic systems provides a powerful tool for understanding strongly correlated physics including phenomena such as spin-charge separation. Substantial theoretical efforts have attempted to extend the LL phenomenology to two dimensions (2D), especially in models of closely packed arrays of 1D quantum wires, each being described as a LL. Such coupled-wire models have been successfully used to construct 2D anisotropic non-Fermi liquids, quantum Hall states, topological phases, and quantum spin liquids. However, an experimental demonstration of high-quality arrays of 1D LLs suitable for realizing these models remains absent. Here we report the experimental realization of 2D arrays of 1D LLs with crystalline quality in a moiré superlattice made of twisted bilayer tungsten ditelluride (tWTe). Originating from the anisotropic lattice of the monolayer, the moiré pattern of tWTe hosts identical, parallel 1D electronic channels, separated by a fixed nanoscale distance, which is tunable by the interlayer twist angle. At a twist angle of ~ 5 degrees, we find that hole-doped tWTe exhibits exceptionally large transport anisotropy with a resistance ratio of ~ 1000 between two orthogonal in-plane directions. The across-wire conductance exhibits power-law scaling behaviors, consistent with the formation of a 2D anisotropic phase that resembles an array of LLs. Our results open the door for realizing a variety of correlated and topological quantum phases based on coupled-wire models and LL physics.
29 pages, 4 Main Figures + 13 Extended Data Figures
References in corpus (11)
- Advanced capabilities for materials modelling with Quantum ESPRESSO
- Quantum Spin Hall Effect and Topological Field Effect Transistor in Two-Dimensional Transition Metal Dichalcogenides
- Titanic Magnetoresistance in WTe2
- Observation of the Quantum Spin Hall Effect up to 100 Kelvin in a Monolayer Crystal
- Lattice relaxation and energy band modulation in twisted bilayer graphenes
- Spin-charge separation and localization in one-dimension
- Apparent power-law behavior of conductance in disordered quasi-one-dimensional systems
- Non-Abelian SU(N-1)-singlet fractional quantum Hall states from coupled wires
- Two dimensional spin liquids with topological order in an array of quantum wires
- Correlation of Crystal Quality and Extreme Magnetoresistance of WTe
- From coupled wires to coupled layers: Model with three-dimensional fractional excitations
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