Atomic Structures, Magnetovolume and Pressure Effects in Amorphous La(Fe_xAl_<1-x>)_<13> Alloys Consisting of Icosahedral Clusters
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概要
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The atomic structures of amorphous La(Fe_xAl_<1-x>)_<13> alloys have been investigated by x-ray diffraction, and the local ordering characterized by the icosahedral clusters has been confirmed. From the ^<57>Fe Mossbauer spectra, it has been revealed that the local environment around Fe atoms in the amorphous La(Fe_<0.90>Al_<0.10>)_<13> alloy is very similar to that in the crystalline counterpart. Re-entrant spin-glass behavior has been observed in the concentration range where the antiferromagnetic order occurs in the crystalline state. The Curie temperature in the amorphous state decreases with increasing x and it is higher than the Neel and Curie temperatures in the crystalline state. The spin-wave stiffness constant in the amorphous state is extremely small, suggesting a magnetic instability. The amorphous RE(Fe_<1-x>Al_x)_<13> alloys also exhibit re-entrant spin-glass behavior and the spin freezing temperature is hardly changed by replacing RE because there is no change in the Fe-Fe distance in the icosahedral clusters. A large thermal expansion anomaly has been observed in a wide temperature range. This anomaly is retained, even at high temperatures well above T_C. A significant ΔE effect has also been found in the temperature and field dependences of Young's modulus. The temperature dependence of the forced-volume magnetostriction ∂ω/∂H exhibits a broad peak at the spin freezing temperature T_f and its divergent behavior at T_f is accounted for by the variable amplitude of the local magnetic moment in the itinerant spin glasses. The temperature dependence of the saturation magnetostriction λ_S of the ferromagnetic alloys is explained by the two-ion model, reflecting the peculiar amorphous structure consisting of icosahedral clusters. Poisson's ratio determined from the surface phase velocities of the Rayleigh and Sezawa waves is very close to 1/3. The compressibility κ obtained from Brillouin scattering is significantly large. Various magnetovolume and pressure effects become remarkable with increasing Fe content.icosahedral clusterspin-glassspin-wave stiffness constantthermal expansion anomalyspin fluctuationΔE effectmagnetovolume effectpressure effectcompressibilityPoisson's ratio
- 東北大学の論文
- 1995-03-30
著者
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MATSUBARA Eiichiro
Department of Materials Science and Engineering, Kyoto University
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Waseda Yoshio
Institute for Advanced Materials Processing, Tohoku University
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Waseda Yoshio
Institute For Advanced Materials Processing Tohoku University
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FUKAMICHI Kazuaki
Department of Materials Science,Faculty of Engineering,Tohoku University
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Fukamichi Kazuaki
Department Of Materials Science Faculty Of Engineering Tohoku University
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Matsubara Eiichiro
Department Of Materials Science And Engineering Faculty Of Engineering Kyoto University
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Chiang Te-hsuan
Department Of Materials Science Faculty Of Engineering Tohoku University
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Waseda Yoshio
Institute For Advanced Materials Processing
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Fukamichi Kazuaki
Department Of Aterials Science Graduate School Of Engineering Tohoku University
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MATSUBARA Eiichiro
Department of Material Science and Engineering, Kyoto University
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