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Finite-momentum superconductivity from chiral bands in twisted MoTe$_2$

Finite-momentum superconductivity from chiral bands in twisted MoTe$_2$

来源:Arxiv_logoArxiv
英文摘要

A recent experiment has reported unconventional superconductivity in twisted bilayer MoTe$_2$, emerging from a normal state that exhibits a finite anomalous Hall effect -- a signature of intrinsic chirality. Motivated by this discovery, we construct a continuum model for twisted MoTe$_2$ constrained by lattice symmetries from first-principles calculations that captures the moiré-induced inversion symmetry breaking even in the absence of a displacement field. Building on this model, we show that repulsive interactions give rise to finite-momentum superconductivity via the Kohn-Luttinger mechanism in this chiral moiré system. Remarkably, the finite-momentum superconducting state can arise solely from internal symmetry breaking of the moiré superlattice, differentiating it from previously studied cases that require external fields. It further features a nonreciprocal quasiparticle dispersion and an intrinsic superconducting diode effect. Our results highlight a novel route to unconventional superconducting states in twisted transition metal dichalcogenides moiré systems, driven entirely by intrinsic symmetry-breaking effects.

Yinqi Chen、Cheng Xu、Yang Zhang、Constantin Schrade

物理学

Yinqi Chen,Cheng Xu,Yang Zhang,Constantin Schrade.Finite-momentum superconductivity from chiral bands in twisted MoTe$_2$[EB/OL].(2025-06-23)[2025-07-16].https://arxiv.org/abs/2506.18886.点此复制

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