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Spin-glass behavior and magnetocaloric effect in melt-spun TbCuAl alloys
Authors:QY Dong  BG Shen  J Shen  JR Sun
Institution:
  • a Department of Physics, Capital Normal University, Beijing 100048, People’s Republic of China
  • b State Key Laboratory for Magnetism, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, People’s Republic of China
  • c Key Laboratory of Cryogenics, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, People’s Republic of China
  • Abstract:Magnetic properties and magnetocaloric effects of amorphous and crystalline TbCuAl ribbons are investigated by measuring their ac susceptibilities including a nonlinear term and dc magnetizations. The in-phase third harmonic ac susceptibility View the MathML source is found to be negative. It can be well fitted by the expression View the MathML source at high temperatures, indicating a spin-glass behavior in amorphous TbCuAl alloy. ΔTf(ω)/Tf(ω)Δlog10ω], a possible distinguishing criterion to judge the presence of a spin-glass behavior is ∼0.011. The frequency-dependent data can be well fitted by the conventional critical slowing down law and the spin-glass transition temperature is obtained to be 20.1 K. The maximum of magnetic entropy change reaches 4.5 J kg−1 K−1 for a field change of 0-50 000 Oe, while the crystalline TbCuAl compound experiences a simple ferromagnetic-to-paramagnetic phase transition. The peak value of magnetic entropy change is obtained at the Curie temperature and reaches 14.4 J kg−1 K−1 for the same field change, which is much larger than that of amorphous TbCuAl alloy.
    Keywords:A  Spin-glass  C  ZrNiAl-type  D  Magnetic entropy change  E  Nonlinear susceptibility
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