Nonlinear Fano resonance in a coupled system magnonic microwave-guide - resonator
Izvestiya VUZ. Applied Nonlinear Dynamics, Tome 29 (2021) no. 2, pp. 254-271
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The purpose of research is to study of characteristics of the Fano resonance in a coupled system of nonlinear microwave-guides and resonators depending on geometric parameters of the systems, magnitude of the coupling between them, and the intensity of spin waves. Methods. Linear and nonlinear spin-wave excitations in lateral systems of irregular microwaveguides and resonators based on films of yttrium iron garnet are considered. Using micromagnetic simulation of spin-wave excitations and numerical integration of the coupled wave equation system, the transfer characteristics of the "microwaveguide - resonator" system and the Fano resonance parameters are calculated taking into account the cubic nonlinearity of magnetic media. Results. Based on the numerical integration of the system of equations of coupled waves that take into account the cubic nonlinearity of the magnetic media, theoretical studies have been carried out of the dependences of the transfer and phase characteristics of the "microwave-guide - resonator" system on the intensity of surface spin waves. Features of the demonstration of constructive and destructive interference of spin waves at Fano resonance are studied. Dependences of characteristics of the parameters of the Fano nonlinear resonance (asymmetry coefficient, resonance frequency shifts) on the intensity of spin-wave excitations are established. Conclusion. Results can be used to create spin-wave demultiplexers, power dividers and microwave couplers based on the lateral system of magnetic waveguides as a threshold element for neuromorphic networks, etc.
Keywords:
Spin waves, magnonics, magnetic structures, Fano resonance.
@article{IVP_2021_29_2_a3,
author = {A. A. Grachev and E. N. Beginin and A. A. Martyshkin and A. B. Hutieva and I. O. Filchenkov and A. V. Sadovnikov},
title = {Nonlinear {Fano} resonance in a coupled system magnonic microwave-guide - resonator},
journal = {Izvestiya VUZ. Applied Nonlinear Dynamics},
pages = {254--271},
year = {2021},
volume = {29},
number = {2},
language = {ru},
url = {http://geodesic.mathdoc.fr/item/IVP_2021_29_2_a3/}
}
TY - JOUR AU - A. A. Grachev AU - E. N. Beginin AU - A. A. Martyshkin AU - A. B. Hutieva AU - I. O. Filchenkov AU - A. V. Sadovnikov TI - Nonlinear Fano resonance in a coupled system magnonic microwave-guide - resonator JO - Izvestiya VUZ. Applied Nonlinear Dynamics PY - 2021 SP - 254 EP - 271 VL - 29 IS - 2 UR - http://geodesic.mathdoc.fr/item/IVP_2021_29_2_a3/ LA - ru ID - IVP_2021_29_2_a3 ER -
%0 Journal Article %A A. A. Grachev %A E. N. Beginin %A A. A. Martyshkin %A A. B. Hutieva %A I. O. Filchenkov %A A. V. Sadovnikov %T Nonlinear Fano resonance in a coupled system magnonic microwave-guide - resonator %J Izvestiya VUZ. Applied Nonlinear Dynamics %D 2021 %P 254-271 %V 29 %N 2 %U http://geodesic.mathdoc.fr/item/IVP_2021_29_2_a3/ %G ru %F IVP_2021_29_2_a3
A. A. Grachev; E. N. Beginin; A. A. Martyshkin; A. B. Hutieva; I. O. Filchenkov; A. V. Sadovnikov. Nonlinear Fano resonance in a coupled system magnonic microwave-guide - resonator. Izvestiya VUZ. Applied Nonlinear Dynamics, Tome 29 (2021) no. 2, pp. 254-271. http://geodesic.mathdoc.fr/item/IVP_2021_29_2_a3/