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Thermopower Evolution in Yb(Rh1−xCox)2Si2 Upon 4f Localization (CROSBI ID 273619)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Stockert, U. ; Klingner, C. ; Krellner, C. ; Zlatić, Veljko ; Geibel, C. ; Steglich, F. Thermopower Evolution in Yb(Rh1−xCox)2Si2 Upon 4f Localization // Journal of low temperature physics, 196 (2019), 364-374. doi: 10.1007/s10909-019-02187-6

Podaci o odgovornosti

Stockert, U. ; Klingner, C. ; Krellner, C. ; Zlatić, Veljko ; Geibel, C. ; Steglich, F.

engleski

Thermopower Evolution in Yb(Rh1−xCox)2Si2 Upon 4f Localization

We present thermopower measurements on Yb(Rh1−𝑥Co𝑥)2Si2. Upon cobalt substitution, the Kondo temperature is decreasing and the single large thermopower minimum observed for YbRh2Si2 splits into two minima. Simultaneously, the absolute thermopower values are strongly reduced due to a weaker exchange coupling between the 4f and the conduction electron states with increasing x. Pure YbCo2Si2 is considered a stable trivalent system. Nevertheless, we still observe two minima in the thermopower indicative of weak residual Kondo scattering. This is in line with results from photoemission spectroscopy revealing a tiny contribution from Yb2+. The value at the high-T minimum in S(T) is found to be proportional to the Sommerfeld coefficient for the whole series. This unexpected finding is discussed in relation to recent measurements of the valence and Fermi surface evolution with temperature.

Thermopower ; Heavy-fermion system ; Kondo interaction ; Crystal electric field splitting

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Podaci o izdanju

196

2019.

364-374

objavljeno

0022-2291

1573-7357

10.1007/s10909-019-02187-6

Povezanost rada

Fizika

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