Observation of Topological Magnon Edge States.

Zhang, Jihai; Zhang, Meng-Han; Li, Peigen; Liu, Zizhao; Tao, Ye; Wang, Hongkun; Yao, Dao-Xin; Guo, Donghui et al. · ACS Nano · 2026

basic_science · Level V

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Abstract

Magnons, the quanta of spin waves, can serve as information carriers with promising applications in ultralow-power spintronic devices. Specifically, magnon Chern insulators (MCIs) exhibit topological magnon band structures featuring chiral edge states. Direct observations of the topologically protected magnon edge states have long been pursued. Here, we report the spatially resolved detection of magnon edge states in a two-dimensional ferromagnet with a honeycomb lattice (single-layer chromium triiodide). Using scanning tunneling microscopy, we observed magnon-assisted inelastic tunneling conductance and revealed the gapped magnon spectra with enhanced signals at the van Hove singularities. Extra tunneling conductance contributed from the magnon edge states was detected at different edge configurations. Our work provided direct evidence proving the existence of MCI states down to the single-layer limit, initiating spatially resolved explorations of exotic properties arising from topological edge states of MCIs.