: We report on a comprehensive investigation of collective spin waves in RKKY interlayer-coupled Ni80Fe20 (10nm)/Ru(1.0 nm)/ Ni80Fe20 (10nm) nanowire arrays. We employed Brillouin light scattering to probe the field- and wavevector-dependences of the spin-wave frequency spectra. The acquired data was subsequently analyzed and interpreted within the framework of a microscopic Hamiltonian-based method, enabling a detailed understanding of the observed spin-wave behaviour. We observed the propagation of Bloch-type collective spin waves within the arrays, characterized by distinct magnonic bandwidths that stem from the combined influence of RKKY interlayer and inter-nanowire dynamical dipolar interactions..

Collective spin waves in RKKY interlayer-coupled Ni80Fe20/Ru/ Ni80Fe20nanowire arrays

Gianluca Gubbiotti
2024

Abstract

: We report on a comprehensive investigation of collective spin waves in RKKY interlayer-coupled Ni80Fe20 (10nm)/Ru(1.0 nm)/ Ni80Fe20 (10nm) nanowire arrays. We employed Brillouin light scattering to probe the field- and wavevector-dependences of the spin-wave frequency spectra. The acquired data was subsequently analyzed and interpreted within the framework of a microscopic Hamiltonian-based method, enabling a detailed understanding of the observed spin-wave behaviour. We observed the propagation of Bloch-type collective spin waves within the arrays, characterized by distinct magnonic bandwidths that stem from the combined influence of RKKY interlayer and inter-nanowire dynamical dipolar interactions..
2024
Istituto Officina dei Materiali - IOM - Sede Secondaria Perugia
Brillouin light scattering
Interlayer exchange coupling
Magnetic Nanowires
RKKY
Spin dynamics
spin waves
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/480082
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