NEUTRON-SCATTERING STUDY OF CRYSTAL-FIELD ENERGY-LEVELS AND FIELD-DEPENDENCE OF THE MAGNETIC ORDER IN SUPERCONDUCTING HONI2B2C

被引:21
作者
GRIGEREIT, TE
LYNN, JW
CAVA, RJ
KRAJEWSKI, JJ
PECK, WF
机构
[1] UNIV MARYLAND,CTR SUPERCONDUCT RES,COLLEGE PK,MD 20742
[2] AT&T BELL LABS,MURRAY HILL,NJ 07974
来源
PHYSICA C | 1995年 / 248卷 / 3-4期
基金
美国国家科学基金会;
关键词
D O I
10.1016/0921-4534(95)00312-6
中图分类号
O59 [应用物理学];
学科分类号
摘要
Elastic and inelastic neutron scattering measurements have been carried out to investigate the magnetic properties of superconducting (T-c similar to 8 K) HoNi2B2C. The inelastic measurements reveal that the lowest two crystal field transitions out of the ground state occur at 11.28(3) and 16.00(2) meV, while the transition of 4.70(9) meV between these two levels is observed at elevated temperatures. The temperature dependence of the intensities of these transitions is consistent with both the ground state and these higher levels being magnetic doublers. The system becomes magnetically long range ordered below 8 K, and since this ordering energy kT(N) approximate to 0.69 meV much less than 11.28 meV the magnetic properties in the ordered phase are dominated by the ground-state spin dynamics only. The low temperature structure, which coexists with superconductivity, consists of ferromagnetic sheets of Ho3+ moments in the a - b plane, with the sheets coupled antiferromagnetically along the c-axis. The magnetic stare that initially forms on cooling, however, is dominated by an incommensurate spiral antiferromagnetic state along the c-axis, with wave vector q(c) similar to 0.054 Angstrom(-1), in which these ferromagnetic sheets are canted from their low temperature antiparallel configuration by similar to 17 degrees. The intensity for this spiral state reaches a maximum near the reentrant superconducting transition at similar to 5 K; the spiral state then collapses at lower temperature in favor of the commensurate antiferroma,gnetic state. We have investigated the field dependence of the magnetic order at and above this reentrant superconducting transition. Initially the field rotates the powder particles to align the a - b plane along the field direction, demonstrating that the moments strongly prefer to lie within this plane due to the crystal field anisotropy. Upon subsequently increasing the field at constant T the antiferromagnetic and spiral states are both observed to decrease in intensity, but at modest fields the spiral state decreases much less rapidly. Approaching the superconducting phase boundary from high fields, we find that the spiral state is strongly preferred, in deference to the superconductivity, again demonstrating a direct coupling between these two cooperative phenomena. The magnitude of the spiral wave vector q,, on the other hand, shows very little field dependence. A magnetic moment of 8.2 +/- 0.2 mu(B) for the Ho3+ is Obtained from the observed field dependence of the induced moment at high fields (7T).
引用
收藏
页码:382 / 392
页数:11
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