Topology of magnons: classification and application to honeycomb Kitaev magnets
· Invited
Abstract
Compared to their electronic counterparts in topological band theory, much less in known about the topology of spin wave excitations in a general magnetic order. Here we provide a generic theory framework to classify and compute the topology of magnons, by mapping an arbitrary linear spin wave into a local free-fermion Hamiltonian with exactly the same spectrum, symmetry implementation and band topology. This allows us to achieve a full classification and calculation on any topological properties of magnon bands. We apply this fermionization approach to honeycomb Kitaev magnet α-RuCl3, and show the existence of topologically protected magnon band crossings, and field-induced magnon Chern bands under small magnetic fields.
*This work is supported by the Center for Emergent Materials, an NSF MRSEC, under award number DMR-1420451; by NSF under award number DMR-1653769 and in part by NSF PHY-1607611.
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Presenters
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Yuan-Ming Lu
- Ohio State University
- Physics, Ohio State University
- Physics, OSU
- Department of Physics, Ohio State University
- Department of Physics, The Ohio State University
- Deaprtment of Physics, Ohio State University