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Substrate conformal imprint fabrication process of synthetic antiferromagnetic nanoplatelets

Authors :
J. Li
P. van Nieuwkerk
M. A. Verschuuren
B. Koopmans
R. Lavrijsen
Physics of Nanostructures
Applied Physics and Science Education
Eindhoven Hendrik Casimir institute
EIRES
Source :
Applied Physics Letters, 121(18):182406. American Institute of Physics, arXiv, 2022:2206.15320. Cornell University Library
Publication Year :
2022

Abstract

Methods to fabricate and characterize monodisperse magnetic nanoplatelets for fluid/bio-based applications based on spintronic thin-film principles are a challenge. This is due to the required top-down approach where the transfer of optimized blanket films to free particles in a fluid while preserving the magnetic properties is an uncharted field. Here, we explore the use of substrate conformal imprint lithography (SCIL) as a fast and cost-effective fabrication route. We analyze the size distribution of nominal 1.8 μm and 120 nm diameter platelets and show the effect of the fabrication steps on the magnetic properties which we explain through changes in the dominant magnetization reversal mechanism as the size decreases. We show that SCIL allows for efficient large-scale platelet fabrication and discuss how application-specific requirements can be solved via process and material engineering.

Details

Language :
English
ISSN :
00036951
Volume :
121
Issue :
18
Database :
OpenAIRE
Journal :
Applied Physics Letters
Accession number :
edsair.doi.dedup.....47dd9de9b26d1f535135afbe173fde2c