High-frequency magnetic response of crystalline and nanocrystalline antiferromagnetic NiO
Name
025222_1_9.0000781.pdf
Description
Published version
Size
5.67 MB
Format
Adobe PDF
Checksum (MD5)
fad84740ac55c0ee1572542a3d40d7ea
Author(s) • •
Brzuszek, Kacper
Ross, Caroline A
Janutka, Andrzej
Date Issued
February 12, 2024
Journal
AIP Advances
Publisher
AIP Publishing
Citation
Kacper Brzuszek, Caroline A. Ross, Andrzej Janutka; High-frequency magnetic response of crystalline and nanocrystalline antiferromagnetic NiO. AIP Advances 1 February 2024; 14 (2): 025222.
Version
Final published version
Abstract
Performing micromagnetic simulations, we study the efficiency of response of bulk and polycrystalline nickel oxide (NiO) to high-frequency (up to 100 GHz) magnetic fields with relevance to potential application of the antiferromagnet as a core material to high-frequency coils and resonators. NiO is advantageous due to its insulating property and high Néel temperature. Though the dynamical susceptibility of the antiferromagnet is low, the achievable product of susceptibility and frequency (“performance factor”) appears to be relatively high, comparable to that of previously considered superferromagnetic systems. This makes NiO a potential core material for operating at extremely-high (sub-THz) frequency. The influence of thermal fluctuations on the susceptibility is estimated to be weak up to room temperature even for a nanocrystalline antiferromagnet, whereas, the magnetic response is linear for much wider ranges of frequencies and field amplitudes than for ferromagnetic and superferromagnetic systems.
MIT Department
Massachusetts Institute of Technology. Department of Materials Science and Engineering
Terms of Use
Creative Commons Attribution
Persistent DSpace Link
DOI of Published Version
https://doi.org/10.1063/9.0000781