Finite-size scaling behavior and intrinsic critical exponents of nickel: Comparison with the three-dimensional Heisenberg model

被引:23
|
作者
Wang, Jun [1 ]
Wu, Wei [1 ]
Zhao, Fan [1 ]
Zhao, Guo-meng [1 ,2 ]
机构
[1] Ningbo Univ, Fac Sci, Dept Phys, Ningbo 315211, Zhejiang, Peoples R China
[2] Calif State Univ Los Angeles, Dept Phys & Astron, Los Angeles, CA 90032 USA
来源
PHYSICAL REVIEW B | 2011年 / 84卷 / 17期
基金
中国国家自然科学基金;
关键词
MAGNETIC CRITICAL FLUCTUATIONS; 2 LENGTH SCALES; NEUTRON-SCATTERING; CURIE-TEMPERATURE; ULTRATHIN FILMS; NANOPARTICLES; MULTILAYERS; HOLMIUM; CU(100); ALLOYS;
D O I
10.1103/PhysRevB.84.174440
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
report high-temperature magnetic measurements of silica-coated nickel nanoparticles. The Curie temperature is found to decrease with decreasing particle size and follow a finite-size scaling relation with the correlation length exponent nu = 1.06 +/- 0.07. The measured exponent is in excellent agreement with the reported values for nickel nanowires and some nickel thin films. By carefully analyzing the reported thickness dependencies of the Curie temperatures for some nickel films, we show that the intrinsic nu value for nickel is 0.73 +/- 0.03, while the much larger nu values (about 1.0) found for some other samples might arise from the presence of long-range correlated disorder near the surface. The intrinsic nu value together with the experimental values of other critical exponents consistently shows that the three-dimensional Heisenberg model is sufficient to describe the ferromagnetism of nickel. Our current work thus resolves a long-standing controversy in this field.
引用
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页数:5
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