Pregled bibliografske jedinice broj: 210841
Specific heat of the Yb(0.5)Y(0.5)InCu(4)
Specific heat of the Yb(0.5)Y(0.5)InCu(4) // Conference on Concepts in Electron Correlation / Zlatić, Veljko (ur.).
Hvar, 2005. (poster, međunarodna recenzija, sažetak, znanstveni)
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Naslov
Specific heat of the Yb(0.5)Y(0.5)InCu(4)
Autori
Aviani, Ivica ; Hemberger, Joachim ; Loidl, Alois ; Starešinić, Damir ; Očko, Miroslav ; Sarrao, John Louis
Vrsta, podvrsta i kategorija rada
Sažeci sa skupova, sažetak, znanstveni
Izvornik
Conference on Concepts in Electron Correlation
/ Zlatić, Veljko - Hvar, 2005
Skup
Conference on Concepts in Electron Correlation
Mjesto i datum
Hvar, Hrvatska, 30.09.2005. - 05.10.2005
Vrsta sudjelovanja
Poster
Vrsta recenzije
Međunarodna recenzija
Ključne riječi
Heavy fermions; Valence fluctuations; Crystalline electrical field
Sažetak
We report measurements and data analysis of the specific heat of Yb(0.5)Y(0.5)InCu(4). The measurements were performed in the temperature range between 2 K and 300 K and in magnetic field of 0 T and 5 T. The specific heat data of the high-temperature local-moment (LM) phase of YbInCu(4) and of Yb(0.5)Y(0.5)InCu(4) for which the valence transition disappears, reflect the same underlying physics. The Y-dilution removes the valence phase transition in YbInCu(4), but keeps the essential characteristics of LM phase unchanged. This makes possible a study of LM phase at low temperatures, where the crystal field and the Kondo effects are more pronounced. The magnetic contribution to the specific heat at low temperature is significant. We attribute it to the magnetic response of Yb3+ ion and compare it with the calculated one for the single Yb3+ ion in a crystal field. We assume the gamma (8) quartet ground state and the two close-lying excited doublets gamma (7) and gamma (6). The upturn in magnetic specific heat, obtained at low temperatures, cannot be explained within this crystal field scheme. It can be attributed to the appearance of a week Kondo effect.
Izvorni jezik
Engleski
Znanstvena područja
Fizika