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Dynamics of weak magnetic coupling by x-ray ferromagnetic resonance
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Title
Dynamics of weak magnetic coupling by x-ray ferromagnetic resonance
Issued Date
2023-05
Citation
Kim, Changsoo. (2023-05). Dynamics of weak magnetic coupling by x-ray ferromagnetic resonance. Journal of Applied Physics, 133(17). doi: 10.1063/5.0141994
Type
Article
Keywords
AC SPIN CURRENTSELF-ABSORPTIONINTERLAYERANISOTROPYTHICKNESSTORQUERANGE
ISSN
0021-8979
Abstract
We investigate the interaction between two magnetic layers separated with a normal metal insertion layer (Ti, Pt, and Ru) using x-ray ferromagnetic resonance (XFMR). We measure the amplitude and phase of the ferromagnetic resonance of both layers. Our results indicate that a ferromagnetic exchange coupling between two layers is a dominant coupling mechanism for a thick insertion metal layer. Based on the exchange coupling model, we extract the smallest value of the indirect exchange coefficient of 1.2 μJ/m2, which corresponds to an exchange field of about 0.36 mT. While this value is difficult to measure with other experimental tools, we were able to measure the small value because XFMR detects a resonance phenomenon of a thin layer generated by an oscillating indirect exchange and the Oersted fields with a phase and layer resolved observation. © 2023 Author(s).
URI
http://hdl.handle.net/20.500.11750/46531
DOI
10.1063/5.0141994
Publisher
American Institute of Physics Inc.
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Hong, Jung-Il홍정일

Department of Physics and Chemistry

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