Ferromagnetic microstructured thin films with high complex permeability for microwave applications

Author:

Vernieres J.,Bobo J. F.,Prost D.,Issac F.,Boust F.

Publisher

AIP Publishing

Subject

General Physics and Astronomy

Reference7 articles.

1. Scanning ferromagnetic resonance microscopy and resonant heating of magnetite nanoparticles: Demonstration of thermally detected magnetic resonance

2. Locally resolved ferromagnetic resonance in Co stripes

3. It is well known that NiFe thick films lose their high permeability above a critical thickness of 200 nm. In order to raise the effective thickness of NiFe in our samples, we have deposited a multilayer composed of N layers of 150 nm NiFe separated by N − 1 thin layers of SiNx. SiNx plays the role of a laminating spacer in the structure, forcing each individual NiFe layer to have a large permeability, while remaining insulating in order to push away the eddy current effect.10.1063/1.2794026

4. Microwave-assisted switching of NiFe magnetic microstructures

5. An improved permeameter for thin film measurements up to 6 GHz

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