Journal of Physics Condensed Matter · 2020 · 11 citations · 31 references
We present the results of torque magnetometry and magnetic susceptibility measurements to study in detail the spin reorientation transition (SRT) and magnetic anisotropy in the permanent magnet NdCo<sub>5</sub>. We further show simulations of the measurements using first-principles calculations based on density-functional theory and the disordered local moment picture of magnetism at finite temperatures. The good agreement between theory and experimental data leads to a detailed description of the physics underpinning the SRT. In particular we are able to resolve the magnetization of, and to reveal a canting between, the Nd and Co sublattices. The torque measurements carried out in the ac and ab planes near the easy direction allow us to estimate the anisotropy constants, K <sub>1</sub>, K <sub>2</sub> and K <sub>4</sub> and their temperature dependences. Torque curves, τ(γ) recorded by varying the direction of a constant magnetic field in the crystallographic ac plane show a reversal in the polarity as the temperature is changed across the SRT (240 < T < 285 K). Within this domain, τ(γ) exhibits unusual features different to those observed above and below the transition. The single crystals of NdCo<sub>5</sub> were grown using the optical floating zone technique.
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Thermal Properties of the Inhomogeneous Electron Gas
N. David Mermin · Physical Review · 1965 · 2.7K citations
A Family of New Cobalt-Base Permanent Magnet Materials
K. Strnat, G. Hoffer, J. C. Olson et al. · Journal of Applied Physics · 1967 · 405 citations