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Insight into the temperature dependent properties of the ferromagnetic Kondo lattice YbNiSn

dc.contributor.authorGeneralov A.; Sokolov D.A.; Chikina A.; Kucherenko Y.; Antonov V.N.; Bekenov L.V.; Patil S.; Huxley A.D.; Allen J.W.; Matho K.; Kummer K.; Vyalikh D.V.; Laubschat C.
dc.date.accessioned2025-05-24T09:30:16Z
dc.description.abstractAnalyzing temperature dependent photoemission (PE) data of the ferromagnetic Kondo-lattice (KL) system YbNiSn in the light of the periodic Anderson model (PAM) we show that the KL behavior is not limited to temperatures below a temperature TK, defined empirically from resistivity and specific heat measurements. As characteristic for weakly hybridized Ce and Yb systems, the PE spectra reveal a 4f-derived Fermi level peak, which reflects contributions from the Kondo resonance and its crystal electric field (CEF) satellites. In YbNiSn this peak has an unusual temperature dependence: With decreasing temperature a steady linear increase of intensity is observed which extends over a large interval ranging from 100 K down to 1 K without showing any peculiarities in the region of TK∼TC=5.6 K. In the light of the single-impurity Anderson model (SIAM) this intensity variation reflects a linear increase of 4f occupancy with decreasing temperature, indicating an onset of Kondo screening at temperatures above 100 K. Within the PAM this phenomenon could be described by a non-Fermi-liquid-like T- linear damping of the self-energy which accounts phenomenologically for the feedback from the closely spaced CEF states. © 2017 American Physical Society.
dc.identifier.doihttps://doi.org/10.1103/PhysRevB.95.184433
dc.identifier.urihttp://172.23.0.11:4000/handle/123456789/16853
dc.relation.ispartofseriesPhysical Review B
dc.titleInsight into the temperature dependent properties of the ferromagnetic Kondo lattice YbNiSn

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