RESISTIVITY, MAGNETIZATION, AND SPECIFIC-HEAT OF YBAGCU4 IN HIGH MAGNETIC-FIELDS

被引:47
作者
GRAF, T
LAWRENCE, JM
HUNDLEY, MF
THOMPSON, JD
LACERDA, A
HAANAPPEL, E
TORIKACHVILI, MS
FISK, Z
CANFIELD, PC
机构
[1] UNIV CALIF IRVINE,DEPT PHYS,IRVINE,CA 92717
[2] SAN DIEGO STATE UNIV,SAN DIEGO,CA 92182
[3] NATL HIGH MAGNET FIELD LAB,PULSE FACIL,LOS ALAMOS,NM 87545
[4] FLORIDA STATE UNIV,TALLAHASSEE,FL 32306
[5] NATL HIGH MAGNET FIELD LAB,TALLAHASSEE,FL 32306
[6] AMES LAB,AMES,IA 50011
来源
PHYSICAL REVIEW B | 1995年 / 51卷 / 21期
关键词
D O I
10.1103/PhysRevB.51.15053
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We report measurements of the resistivity ρ, Sommerfeld coefficient of specific heat γ, and magnetization M of polycrystalline YbAgCu4 in high magnetic fields 0≤B≤18 T [in the case of M(B) to 50 T]. A comparison of the temperature-dependent susceptibility χ(T) as well as field-dependent Sommerfeld coefficient γ and magnetization to Kondo theory for a J=7/2 impurity shows that theory correctly predicts the functional dependence of these quantities on T and B, but the characteristic temperatures determined from the various measurements (120, 98, 77, and 63 K) differ by nearly a factor of 2, which is difficult to understand within the context of Kondo theory even when other possible contributions are considered. In addition the normalized (Wilson) ratio of χ to γ is 1.00 at zero field (compared to 1.14 in Coqblin-Schrieffer theory) and decreases with increasing magnetic field. The magnetoresistance is positive at all temperatures, reaching a value Δρ(B)/ρ(B=0)=0.6 at 25 mK and 18 T. The low-temperature magnetoresistivity Δρ(B) varies as B1.5. We argue that this is dominated by an ordinary impurity effect. Kohler's rule is clearly violated as the temperature is raised; the scattering rate appears to increase with field below 40 K and decrease with field above 40 K. This behavior is expected for an Anderson lattice when a pseudogap is present. At low temperature the resistivity increases as AT2. The coefficient A (corrected for cyclotron-orbit effects) increases with field such that the ratio A(B)/γ(B)2 is a constant. Doping with Lu onto the Yb site, or with Ni onto the Cu site, changes the magnitude of the low-temperature resistivity in a manner consistent with the predictions of the theory of ligand-induced disorder in an Anderson lattice. © 1995 The American Physical Society.
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页码:15053 / 15061
页数:9
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