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◆ Nature communications2026-09-16

Twist degree of freedom activated by pressure-driven interlayer engineering in spiral WS2.

Penghong Ci, Muhua Sun, Yabin Chen, Yoonsoo Rho, Yuzhou Zhao, Kaiyao Xin, Zifeng Mai, Shanyu Liang, Zhongjie Wang, Jiangbin Wu, Hao Hong, Zhongming Wei, Costas P Grigoropoulos, Yue-Yang Liu, Ping-Heng Tan, Junqiao Wu

原始摘要(英文原文)· Original abstract
Precise twist-angle control in van der Waals (vdW) moiré superlattices enables twistronic tuning of interfacial responses and emergent quantum states, but it remains unclear how atomic registry in three-dimensional stacks is linked to interlayer coupling and whether it can produce an internal twist degree of freedom without external torque. Here, we show that, via interlayer engineering, screw-dislocation-driven multilayer spiral WS2 exhibits a reversible pressure-induced rotation of second-harmonic-generation polar pattern that saturates near 1 GPa, corresponding to an effective average interlayer twist of 0.2° per layer. This compression-twist coupling arises from moiré defined hierarchy of stacking energies and the associated atomic reconstruction, which together generate a spontaneous rotational torque at a slipped, metastable interface and couple the twist angle to the interlayer spacing. Our findings establish twist-degree-of-freedom manipulation in vdW crystals, opening pathways to reshape correlation-driven behaviors in moiré-of-moiré architectures and to explore chiral elasticity beyond Cauchy continuum mechanics.
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Twist degree of freedom activated by pressure-driven interlayer engineering in spiral WS2. — 科研速览 Science Skim