We investigate the high-frequency response of magnetization dynamics through magnetoimpedance (MI) effect in Permalloy-based multilayered thin films produced with two different non-magnetic metallic spacers: Cu and Ag. Due to the nature of the spacer materials, we are able to play with magnetic properties and to study both systems with weak/strong magnetic anisotropy. We verify very rich features in the magnetoimpedance behavior and high magnetoimpedance ratios, with values above 200%. We compare the MI results obtained in multilayered thin films with distinct spacers and number of bilayers, and discuss them in terms of the different mechanisms that govern the MI changes observed at distinct frequency ranges, intensity of the magnetic aniso...
Permalloy-based thin film structures are excellent materials for sensor applications. Temperature de...
© 2020 American Physical Society. In this work, magnetization dynamics is studied in superconductor-...
Permalloy-based thin film structures are excellent materials for sensor applications. Temperature de...
We investigate the magnetization dynamics through the magnetoimpedance effect in ferromagnetic NiFe/...
We investigate the magnetization dynamics through the magnetoimpedance effect in ferromagnetic NiFe/...
We investigate the magnetization dynamics through the magnetoimpedance effect in ferromagnetic NiFe/...
We investigate the magnetoimpedance effect in ferromagnetic multilayered biphase films. We verify th...
The magnetoimpedance effect in nanostructured multilayers is studied theoretically. The multi-layere...
We investigate the quasi-static magnetic, magnetotransport, and dynamic magnetic properties in ferro...
Permalloy-based thin film structures are excellent materials for sensor applications. Temperature de...
Intensive studies of the magnetoimpedance (MI) effect in nanostructured multilayers provide a good p...
We report a systematic study of structural properties and quasi-static and dynamical magnetization b...
In this work, the magnetoimpedance (MI) and magnetization dynamics in multilayered Ni81Fe19/Ag and ...
The sensitivity of magnetic sensors based on the Giant Magneto-Impedance effect can be enh...
In this work, magnetization dynamics is studied in superconductor-ferromagnet-superconductor three-l...
Permalloy-based thin film structures are excellent materials for sensor applications. Temperature de...
© 2020 American Physical Society. In this work, magnetization dynamics is studied in superconductor-...
Permalloy-based thin film structures are excellent materials for sensor applications. Temperature de...
We investigate the magnetization dynamics through the magnetoimpedance effect in ferromagnetic NiFe/...
We investigate the magnetization dynamics through the magnetoimpedance effect in ferromagnetic NiFe/...
We investigate the magnetization dynamics through the magnetoimpedance effect in ferromagnetic NiFe/...
We investigate the magnetoimpedance effect in ferromagnetic multilayered biphase films. We verify th...
The magnetoimpedance effect in nanostructured multilayers is studied theoretically. The multi-layere...
We investigate the quasi-static magnetic, magnetotransport, and dynamic magnetic properties in ferro...
Permalloy-based thin film structures are excellent materials for sensor applications. Temperature de...
Intensive studies of the magnetoimpedance (MI) effect in nanostructured multilayers provide a good p...
We report a systematic study of structural properties and quasi-static and dynamical magnetization b...
In this work, the magnetoimpedance (MI) and magnetization dynamics in multilayered Ni81Fe19/Ag and ...
The sensitivity of magnetic sensors based on the Giant Magneto-Impedance effect can be enh...
In this work, magnetization dynamics is studied in superconductor-ferromagnet-superconductor three-l...
Permalloy-based thin film structures are excellent materials for sensor applications. Temperature de...
© 2020 American Physical Society. In this work, magnetization dynamics is studied in superconductor-...
Permalloy-based thin film structures are excellent materials for sensor applications. Temperature de...