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Possible Sliding Regimes in Twisted Bilayer WTe$_2$

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arxiv 2405.09616 v2 pith:GLULAGQE submitted 2024-05-15 cond-mat.str-el cond-mat.mtrl-scicond-mat.supr-con

classification cond-mat.str-elcond-mat.mtrl-scicond-mat.supr-con
keywords twteslidingcoupledcouplingsdegselectron-dopedhole-dopedinter-wire
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abstract

Inspired by the observation of increasingly one-dimensional (1D) behavior with decreasing temperature in small-angle twisted bilayers of WTe$_2$ (tWTe$_2$), we theoretically explore the exotic sliding regimes that could be realized in tWTe$_2$. At zero displacement field, while hole-doped tWTe$_2$ can be thought of as an array of weakly coupled conventional two-flavor 1D electron gases (1DEGs), the electron-doped regime is equivalent to coupled four-flavor 1DEGs , due to the presence of an additional "valley'' degree of freedom. In the decoupled limit, the electron-doped system can thus realize phases with a range of interesting ordering tendencies, including $4k_F$ charge-density-wave and charge-$4e$ superconductivity. Dimensional crossovers and cross-wire transport due to inter-wire couplings of various kinds are also discussed. We find that a sliding Luther-Emery liquid with small inter-wire couplings is probably most consistent with current experiments on hole-doped tWTe$_2$.

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  1. Sliding Luttinger Liquid and Topological Flat Bands in Symmetry Mismatched Moir\'e Interfaces

    cond-mat.mes-hall 2024-12 conditional novelty 6.0 of 10

    A microscopic continuum model for symmetry-mismatched moiré interfaces shows that a rectangular substrate can fold the valleys of a honeycomb monolayer into quasi-one-dimensional wires with Sliding Luttinger Liquid ph...

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