Valence effect on the thermopower of Eu systems

We investigated the thermoelectric transport properties of EuNi2 P2 and EuIr2Si2 to evaluate the relevance of Kondo interaction and valence fluctuations in these materials. While the thermal conductivities behave conventionally, the thermopower curves exhibit large values with pronounced maxima as t...

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Veröffentlicht in:Physical review. B 2020-06, Vol.101 (23), p.1, Article 235106
Hauptverfasser: Stockert, U., Seiro, S., Caroca-Canales, N., Hassinger, E., Geibel, C.
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Sprache:eng
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Zusammenfassung:We investigated the thermoelectric transport properties of EuNi2 P2 and EuIr2Si2 to evaluate the relevance of Kondo interaction and valence fluctuations in these materials. While the thermal conductivities behave conventionally, the thermopower curves exhibit large values with pronounced maxima as typically observed in Ce- and Yb-based heavy-fermion materials. However, neither the positions of these maxima nor the absolute thermopower values at low temperature are in line with the heavy-fermion scenario and the moderately enhanced effective charge carrier masses. Instead, we may relate the thermopower in our materials to the temperature-dependent Eu valence by taking into account changes in the chemical potential. Our analysis confirms that valence fluctuations play an important role in EuNi2 P2 and EuIr2Si2.
ISSN:2469-9950
2469-9969
DOI:10.1103/PhysRevB.101.235106