Ferromagnetic Resonance in Permalloy Metasurfaces
Н. Ногинова, V. A. Gubanov, Mohammad Shahabuddin, Yu. A. Gubanova, Sean Nesbit, V. V. Demidov, В. А. Ацаркин, E. N. Beginin, А. V. Sadovnikov
Abstract
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Н. Ногинова, V. A. Gubanov, Mohammad Shahabuddin, Yu. A. Gubanova, Sean Nesbit, V. V. Demidov, В. А. Ацаркин, E. N. Beginin, А. V. Sadovnikov
Abstract
Open-access reader
Permalloy films with one-dimensional (1D) profile modulation of submicron periodicity are fabricated based on commercially available DVD-R discs and studied using ferromagnetic resonance (FMR) method and micromagnetic numerical simulations. The main resonance position shows in-plane angular dependence which is strongly reminiscent of that in ferromagnetic films with uniaxial magnetic anisotropy. The main signal and additional low field lines are attributed to multiple standing spin wave resonances defined by the grating period. The results may present interest in magnetic metamaterials and magnonics applications.
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Permalloy films with one-dimensional (1D) profile modulation of submicron periodicity are fabricated based on commercially available DVD-R discs and studied using ferromagnetic resonance (FMR) method and micromagnetic numerical simulations. The main resonance position shows in-plane angular dependence which is strongly reminiscent of that in ferromagnetic films with uniaxial magnetic anisotropy. The main signal and additional low field lines are attributed to multiple standing spin wave resonances defined by the grating period. The results may present interest in magnetic metamaterials and magnonics applications.
Key concepts: Permalloy, Ferromagnetic resonance, Condensed matter physics, Magnonics, Materials science, Ferromagnetism, Resonance (particle physics), Metamaterial