Electrical resistivity, thermopower, and thermal conductivity of single grained (Y, Tb, Ho, Er)-Mg-Zn icosahedral quasicrystals

Citation
K. Gianno et al., Electrical resistivity, thermopower, and thermal conductivity of single grained (Y, Tb, Ho, Er)-Mg-Zn icosahedral quasicrystals, MAT SCI E A, 294, 2000, pp. 715-718
Citations number
16
Categorie Soggetti
Apllied Physucs/Condensed Matter/Materiales Science","Material Science & Engineering
Journal title
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING
ISSN journal
09215093 → ACNP
Volume
294
Year of publication
2000
Pages
715 - 718
Database
ISI
SICI code
0921-5093(200012)294:<715:ERTATC>2.0.ZU;2-C
Abstract
We report on measurements of the temperature dependence of the electrical r esistivity rho, the thermopower S, and the thermal conductivity lambda of s ingle grained RE-Mg-Zn (RE=Y, Tb, Ho, Er) icosahedral quasicrystals between 5 acid 300 K. The resistivity of all four samples is very weakly temperatu re dependent with a negative slope d rho /dT. The S/T versus temperature cu rves exhibit a maximum at temperatures between 12 and 15 K. This feature is observed for all here investigated quasicrystalline materials. The appeara nce of a maximum in the thermal conductivity of (Y, Ho, Er)-Mg-Zn, and a pl ateau in that of Tb-Mg-Zn is ascribed to a power-law temperature dependence of the mean free path of delocalized quasilattice excitations at intermedi ate temperatures. A progressive suppression of the maximum in the thermal c onductivity data as the de Gennes factor increases indicates for a coupling of the spin system to the lattice. (C) 2000 Elsevier Science B.V. All righ ts reserved.