DocumentCode
149048
Title
Coupling spin waves to circuits through PEEC approach
Author
Freschi, Fabio ; Giaccone, Luca ; Khan, O.U. ; Ragusa, Carlo ; Repetto, Manuela
Author_Institution
Dipt. Energia, Politec. di Torino, Turin, Italy
fYear
2014
fDate
March 31 2014-April 1 2014
Firstpage
1
Lastpage
2
Abstract
The generation of magnetostatic spin waves in magnetic nanostructures can be obtained by using inductive input antennas having different geometries, e.g. a coplanar wave guide (CWG) or a transmission line. The induced spin waves are manipulated in the magnetic nanostructure and result is read out further by a second inductive antenna. The simulation of this structure must take into account the coupling of the magnetic dynamics in the magnetic nanostructure to the external circuits exciting it. In this paper the partial element equivalent circuits (PEEC), usually applied to the simulation of multiconductor circuits, is coupled to the magnetic spin wave model based on the linearized Landau-Lifschitz-Gilbert equation. The coupling between the PEEC equivalent circuit and the spin wave phenomena is eventually taken into account by means of a magnetization controlled voltage source introduced in each longitudinal branch of the PEEC equivalent circuit. A numerical examples of the proposed approach is presented.
Keywords
coplanar waveguides; equivalent circuits; magnetisation; magnetostatic waves; spin waves; transmission lines; CWG; PEEC; coplanar waveguide; coupling spin waves; linearized Landau-Lifschitz-Gilbert equation; magnetic dynamics; magnetic nanostructures; magnetic spin wave model; magnetization controlled voltage source; magnetostatic spin waves; multiconductor circuits; partial element equivalent circuits; transmission lines;
fLanguage
English
Publisher
iet
Conference_Titel
Computation in Electromagnetics (CEM 2014), 9th IET International Conference on
Conference_Location
London
Electronic_ISBN
978-1-84919-817-2
Type
conf
DOI
10.1049/cp.2014.0207
Filename
6826836
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