Article citationsMore>>
Shaw, J.M., Knut, R., Armstrong, A., Bhandary, S., Kvashnin, Y., Thonig, D., Delczeg-Czirjak, E.K., Karis, O., Silva, T., Weschke, E., et al. (2021) Quantifying Spin-Mixed States in Ferromagnets. Physical Review Letters, 127, Article ID: 207201.
https://doi.org/10.1103/PhysRevLett.127.207201
has been cited by the following article:
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TITLE:
Influence of Phosphorus Content and Magnetic Annealing on Soft Magnetic Properties of Electrodeposited Amorphous FeMnP Alloy Films
AUTHORS:
Vincent Izerimana, Lei Ma, Huiliang Wu, Jianbo Wang, Qingfang Liu
KEYWORDS:
Phosphorus, Magnetic Annealing, Soft Magnetic Property, Natural Resonance Frequency
JOURNAL NAME:
Journal of Materials Science and Chemical Engineering,
Vol.11 No.1,
January
30,
2023
ABSTRACT: In this work, we investigated the influence of phosphorus and magnetic anneal on the soft magnetic properties of electrodeposited FeMnP alloy films prepared by changing sodium hypophosphite concentrations. X-ray diffraction radiation patterns showed an amorphous structure of electrodeposited alloy films. The saturation magnetization and coercivity value decreased from 586 emu/cc to 346 emu/cc, and 52 Oe to 18 Oe, with the P content increased, respectively. The absorption resonance peak became broad as the P content increased, and the natural resonance frequency decreased from 1.8 GHz to 0.6 GHz, with the P content increasing. Magnetic annealing of samples reduced the magnetic damping, and natural resonance frequency increased by about 1.8 GHz and 3.5 GHz for the sample with lower and higher P content. The film structure with lower P content changed at 300˚C, while the structure remains unchanged for the films with higher P content. Thus, the crystallization temperature could depend on the P content in the film. FeMnP alloy films could be used in high-frequency devices.