Eu-Eu exchange interaction and Eu distribution in Pb1-xEuxTe from magnetization steps

被引:21
作者
terHaar, E
Bindilatti, V
Oliveira, NF
McCabe, GH
Shapira, Y
Golacki, Z
Charar, S
Averous, M
McNiff, EJ
机构
[1] TUFTS UNIV, DEPT PHYS & ASTRON, MEDFORD, MA 02155 USA
[2] POLISH ACAD SCI, INST PHYS, PL-02668 WARSAW, POLAND
[3] UNIV MONTPELLIER 2, URA 357, GRP ETUD SEMICOND, F-34095 MONTPELLIER 5, FRANCE
[4] MIT, FRANCIS BITTER NATL MAGNET LAB, CAMBRIDGE, MA 02139 USA
基金
美国国家科学基金会;
关键词
D O I
10.1103/PhysRevB.56.8912
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The magnetization of Pb1-xEuxTe samples with x=0.019, 0.026, and 0.060 was measured at 20 mK in fields up to 50 kOe, and at 0.6 K in fields up to 180 kOe. The 20 mK data show the magnetization steps (MST's) arising from pairs and from triplets. The pair MST's are used to obtain the dominant Eu-Eu antiferromagnetic exchange constant, J/k(B)=-0.264+/-0.018 K. The exchange constant for triplets is the same. Comparison of the magnetization curves with theoretical simulations indicates that the Eu ions are not randomly distributed over all the cation sites. The deviation from a random distribution is much smaller if J is assumed to be the nearest-neighbor exchange constant J(1) rather than the next-nearest-neighbor exchange constant J(2) On this basis, J is tentatively identified as J(1). However, the possibility that J=J(2) cannot be excluded completely. To obtain agreement with the data, it must be assumed that the Eu ions tend to bunch together. Comparision with microprobe data indicates that the length scale for these concentration variations is smaller than a few mu m. The theoretical simulations in the present work improve on these performed earlier by including clusters larger than three spins.
引用
收藏
页码:8912 / 8918
页数:7
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