Title :
Analysis of the Circuit-Field Interactions in Propagating Spin-Wave Experiments
Author :
Freschi, Fabio ; Giaccone, Luca ; Khan, Omar ; Ragusa, Carlo ; Repetto, Maurizio
Author_Institution :
Dipt. Energia, Politec. di Torino, Turin, Italy
Abstract :
In propagating spin-wave experiments, a micrometer-wide inductive antenna excites magnetostatic spin waves in a magnetic thin film. These spin waves propagate along the film and are readout by a second displaced antenna to observe the processed signal. We present a numerical model for describing the interaction between the exciting antenna and magnetic film and eventually present a discussion on the efficiency of the excitation process. Our model is based on coupling the partial element equivalent circuit method - usually applied to the simulation of multiconductor circuits, to the micromagnetic model-based on the linearized Landau-Lifschitz-Gilbert equation representing the magnetic film. The problem involves different geometric dimensions: ranging from the millimeter scale in the supply circuit to the micrometer one for the antenna interacting with the magnetic material. In this paper, we report the study of a possible decoupling between the two scales based on an equivalent circuit of the magnetic phenomenon.
Keywords :
equivalent circuits; exchange interactions (electron); excited states; magnetic circuits; magnetic thin films; magnetostatic waves; micromagnetics; spin waves; antenna interaction; circuit-field interaction analysis; equivalent circuit; linearized Landau-Lifschitz-Gilbert equation; magnetic material; magnetic phenomenon; magnetic thin film; magnetostatic spin waves; micromagnetic model; micrometer-wide inductive antenna; multiconductor circuits; numerical model; partial element equivalent circuit method; spin-wave propagation; Couplings; Magnetic circuits; Magnetic separation; Magnetostatic waves; Magnetostatics; Mathematical model; Saturation magnetization; Landau-Lifshitz???Gilbert (LLG) equation; magnonics; partial element equivalent circuit (PEEC); spin waves;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2014.2360231