Neutron spectroscopy evidence on the dual nature of magnetic excitations in a van der Waals metallic ferromagnet Fe$_{2.72}$GeTe$_{2}$
Song Bao, Wei Wang, Yanyan Shangguan, Zhengwei Cai, Zhao-Yang Dong,, Zhentao Huang, Wenda Si, Zhen Ma, Ryoichi Kajimoto, Kazuhiko Ikeuchi,, Shin-ichiro Yano, Shun-Li Yu, Xiangang Wan, Jian-Xin Li, Jinsheng Wen

TL;DR
This study uses neutron spectroscopy to reveal the coexistence and interplay of local magnetic moments and itinerant electrons in a van der Waals ferromagnet, demonstrating complex magnetic excitations and temperature-dependent coherence.
Contribution
It provides direct spectroscopic evidence of both local moments and itinerant electrons coexisting in Fe$_{2.72}$GeTe$_{2}$, highlighting the Kondo effect in a light-electron system.
Findings
Presence of low-energy spin waves from local moments
High-energy continuum from itinerant electrons
Persistence of modes above Curie temperature
Abstract
In the local or itinerant extreme, magnetic excitations can be described by the Heisenberg model which treats electron spins as localized moments, or by the itinerant-electron model where the exchange interaction between electrons leads to unequal numbers of electrons with up and down spins. However, it has been elusive when both local moments and itinerant electrons are present in the intermediate range. Using inelastic neutron scattering, we provide direct spectroscopic evidence on the coexistence of and interplay between local moments and itinerant electrons in a van der Waals metallic ferromagnet FeGeTe, which can sustain tunable room-temperature ferromagnetism down to the monolayer limit. We find that there exist ferromagnetic spin-wave excitations dispersing from the zone center at low energies resulting from local moments, and a column-like broad continuum at the…
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