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Topological metal-insulator transition within the ferromagnetic state - Nature Communications
Abstract A major challenge in condensed matter physics is integrating topological phenomena with correlated electron physics to leverage both types of states for next-generation quantum devices. Metal-insulator transitions are central to bridging these two domains while simultaneously serving as on-off switches for electronic states. Here, we demonstrate how the prototypical material of K2Cr8O16 undergoes a ferromagnetic metal-insulator transition accompanied by a change in band topology.
Honeycomb layered oxides: structure, energy storage, transport, topology and relevant insights
Honeycomb layered oxides: structure, energy storage, transport, topology and relevant insights Godwill Mbiti Kanyolo, *a Titus Masese, *bc Nami Matsubara, d Chih-Yao Chen, b Josef Rizell, e Zhen-Dong Huang,*f Yasmine Sassa, e Martin Månsson, d Hiroshi Senoh c and Hajime Matsumoto c Author affiliations * Corresponding authors a Department of Engineering Science, The University of Electro-Communications, 1-5-1, Chofugaoka, Chofu, Tokyo 182-8585, Japan E-mail: gmkanyolo@gmail.com b AIST-Kyoto...
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