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用于射频传感的磁铁矿纳米晶体的材料表征研究

Material Characterization Study of Magnetite Nanocrystals for RF Sensing.

作者信息

Sherburne Michael D, Dreier Timothy A, Klitsner Benjamin H, Huber Dale L, Ivanov Sergei A, Parks Chris, Simons Matt T, Schamiloglu Edl

机构信息

Johns Hopkins University Applied Physics Laboratory, Laurel, Maryland 20723, United States.

Sandia National Laboratory, Albuquerque, New Mexico 87185-1421, United States.

出版信息

ACS Omega. 2024 Sep 24;9(40):41433-41445. doi: 10.1021/acsomega.4c04589. eCollection 2024 Oct 8.

Abstract

Magnetite nanocrystals show promise for electrically small gigahertz frequency applications, which could lead to miniaturizing transformer cores and new sensing technologies. This work presents a rigorous radiofrequency characterization of these nanocrystals using vector network analyzer (VNA) ferromagnetic resonance (FMR) measurements. For the first time, two different average diameters of FeO nanocrystals are investigated (7.3 and 20.2 nm). When the VNA-FMR results were compared to micromagnetic simulations, the magnetic anisotropy ( ) deviated from the ideal mean orientation value of /2 to /80 for the 7.3 nm nanocrystal. In contrast, the obtained magnetic anisotropy in 20.2 nm nanocrystals slightly deviated to /11 due to less structural deformations. These findings resulted in a newly proposed methodology for an approximate simulation based on VNA-FMR measurements. In addition, this work estimates the approximate amount of nanocrystals needed to measure a useful VNA-FMR spectrum.

摘要

磁铁矿纳米晶体在电小千兆赫兹频率应用方面展现出前景,这可能会使变压器铁芯小型化并催生新的传感技术。这项工作使用矢量网络分析仪(VNA)铁磁共振(FMR)测量对这些纳米晶体进行了严格的射频表征。首次研究了两种不同平均直径的FeO纳米晶体(7.3纳米和20.2纳米)。当将VNA - FMR结果与微磁模拟进行比较时,对于7.3纳米的纳米晶体,磁各向异性( )从理想的平均取向值 /2偏离到 /80。相比之下,由于结构变形较小,在20.2纳米的纳米晶体中获得的磁各向异性略微偏离到 /11。这些发现促成了一种基于VNA - FMR测量的近似模拟新方法。此外,这项工作估计了测量有用的VNA - FMR光谱所需的纳米晶体的大致数量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a842/11465251/ceea20a2d352/ao4c04589_0001.jpg

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