Direct observation of topological magnon polarons in a multiferroic material
Nature Communications, ISSN: 2041-1723, Vol: 14, Issue: 1, Page: 6093
2023
- 17Citations
- 31Captures
- 1Mentions
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New Science Study Findings Recently Were Reported by Researchers at Nanjing University (Direct observation of topological magnon polarons in a multiferroic material)
2023 OCT 12 (NewsRx) -- By a News Reporter-Staff News Editor at NewsRx Science Daily -- New research on science is the subject of a
Article Description
Magnon polarons are novel elementary excitations possessing hybrid magnonic and phononic signatures, and are responsible for many exotic spintronic and magnonic phenomena. Despite long-term sustained experimental efforts in chasing for magnon polarons, direct spectroscopic evidence of their existence is hardly observed. Here, we report the direct observation of magnon polarons using neutron spectroscopy on a multiferroic FeMoO possessing strong magnon-phonon coupling. Specifically, below the magnetic ordering temperature, a gap opens at the nominal intersection of the original magnon and phonon bands, leading to two separated magnon-polaron bands. Each of the bands undergoes mixing, interconverting and reversing between its magnonic and phononic components. We attribute the formation of magnon polarons to the strong magnon-phonon coupling induced by Dzyaloshinskii-Moriya interaction. Intriguingly, we find that the band-inverted magnon polarons are topologically nontrivial. These results uncover exotic elementary excitations arising from the magnon-phonon coupling, and offer a new route to topological states by considering hybridizations between different types of fundamental excitations.
Bibliographic Details
Springer Science and Business Media LLC
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