CRITICAL MAGNETIC FLUCTUATIONS IN MNF2

被引:27
作者
DIETRICH, OW
机构
[1] Danish Atomic Energy Commission, Research Establishment Risø, Roskilde
来源
JOURNAL OF PHYSICS PART C SOLID STATE PHYSICS | 1969年 / 2卷 / 11期
关键词
D O I
10.1088/0022-3719/2/11/317
中图分类号
O469 [凝聚态物理学];
学科分类号
070205 ;
摘要
The critical spin fluctuations in MnF2 have been studied near the critical temperature TN using a triple axis neutron spectrometer with high resolution. Due to the anisotropy in MnF2, the longitudinal and the transverse component of the spin fluctuations can be separated experimentally. The longitudinal component of the static susceptibility diverges at TN, while the time fluctuations undergo the expected thermodynamic slowing down. The spectral width above TN varies in proportion to the temperature power law {(T-TN)/TN} 0·62±0·02. The temperature variation of the static susceptibility and the inverse correlation range of the longitudinal fluctuations are in agreement with the predictions of the Heisenberg model. The divergence of the transverse component is suppressed by the anisotropy, and this component is therefore finite at TN. The variation above T N was interpreted in terms of the transverse transition temperature Tperpendicular, introduced by Moriya. In relation to this temperature, the static properties behave in an almost classical manner, that is in agreement with the molecular field theory. The transverse spectral width above TN varies as {(T-Tperpendicular)/T perpendicular}0·53±0·05. Below T N the transverse fluctuations consist of two spin waves. The spin-wave renormalization with temperature was measured in the long wavelength limit, and was found to vary in proportion to the staggered magnetization. The dynamical scaling law prediction for antiferromagnets of a q3/2 dependence of the spectral width at TN was verified for the transverse component.
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页码:2022 / &
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