Thermally driven sliding in MoS2 moiré superlattices proceeds via domain-wall-mediated collective reconstruction with ultralow barrier rather than rigid translation, as shown by ML MD; 0.1% S vacancies induce pinning.
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Domain-Wall-Mediated Ultralow-Barrier Sliding and Pinning in Ferroelectric Moir\'e Superlattices Revealed by Machine Learning
Thermally driven sliding in MoS2 moiré superlattices proceeds via domain-wall-mediated collective reconstruction with ultralow barrier rather than rigid translation, as shown by ML MD; 0.1% S vacancies induce pinning.