Deposition of Crystalline GdIG Samples Using Metal Organic Decomposition Method

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Fabrication of high quality ferrimagnetic insulators is an essential step for ultrafast magnonics, which utilizes antiferromagnetic exchange of the ferrimagnetic materials. In this work, we deposit high-quality GdIG thin films on a (111)-oriented GGG substrate using the Metal Organic Decomposition (MOD) method, a simple and high throughput method for depositing thin film materials. We postannealed samples at various temperatures and examined the effect on structural properties such as crystallinity and surface morphology. We found a transition in the growth mode that radically changes the morphology of the film as a function of annealing temperature and obtained an optimal annealing temperature for a uniform thin film with high crystallinity. Optimized GdIG has a high potential for spin wave applications with a low damping parameter in the order of 10(-3), which persists down to cryogenic temperatures.
Publisher
MDPI
Issue Date
2022-03
Language
English
Article Type
Article
Citation

MAGNETOCHEMISTRY, v.8, no.3

ISSN
2312-7481
DOI
10.3390/magnetochemistry8030028
URI
http://hdl.handle.net/10203/292592
Appears in Collection
PH-Journal Papers(저널논문)
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