DocumentCode :
76962
Title :
An Iterative Solution for Spin-Wave Dispersion in a Magnonic Ring
Author :
Kumar, Narendra ; Venkat, G. ; Prabhakar, A.
Author_Institution :
Dept. of Electr. Eng., IIT Madras, Chennai, India
Volume :
50
Issue :
9
fYear :
2014
fDate :
Sept. 2014
Firstpage :
1
Lastpage :
6
Abstract :
The dispersion relation of forward volume dipolar spin waves in a magnonic curved waveguide is investigated by solving Walker´s equation in cylindrical coordinates with appropriate boundary conditions. Dispersion for exchange spin waves is then calculated using an iterative method. We validate our results by comparing the dispersion relation for higher bending radius with that of a straight waveguide. We also observe good agreement with the dispersion plots from micromagnetic simulations. For a ring, we impose periodic boundary conditions along the azimuthal direction to obtain standing wave mode patterns. The frequency-mode number characteristics of standing waves follow the dispersion relation for propagating spin waves in a curved waveguide. The maximum spin wave amplitude is not necessarily at the center of the waveguide. Exchange interactions cause the maximum to occur at a lower radius for higher mode numbers.
Keywords :
dispersion relations; exchange interactions (electron); iterative methods; magnons; micromagnetics; spin waves; waveguides; Walker´s equation; azimuthal direction; bending radius; cylindrical coordinates; dispersion relation; exchange interactions; exchange spin waves; forward volume dipolar spin waves; frequency-mode number characteristics; iterative solution; magnonic curved waveguide; magnonic ring; maximum spin wave amplitude; micromagnetic simulations; periodic boundary conditions; propagating spin waves; spin-wave dispersion; standing wave mode patterns; straight waveguide; waveguide center; Boundary conditions; Dispersion; Equations; Magnetization; Mathematical model; Micromagnetics; Optical waveguides; Demagnetization; dispersion; magnetic devices; magnetization; magnetostatic waves; nanostuctured material;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2014.2317458
Filename :
6797895
Link To Document :
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