Abstract
We report spin wave propagation experiments in thin yttrium iron garnet (YIG) films. Using time-resolved scanning Kerr microscopy we extract the mode structure of the spin waves. For quasi-single-mode excitation, the spin wave decay can be fitted with a damped harmonic oscillator function providing us with information about the attenuation length. We measure values of about 2.7 and 3.6 μm for the spin wave decay length of 38- and 49-nm-thick YIG samples, respectively. Micromagnetic simulations are performed to compare experimental and simulated modes. The data are in very good agreement with these simulations.
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CITATION STYLE
Talalaevskij, A., Decker, M., Stigloher, J., Mitra, A., Körner, H. S., Cespedes, O., … Hickey, B. J. (2017). Magnetic properties of spin waves in thin yttrium iron garnet films. Physical Review B, 95(6). https://doi.org/10.1103/PhysRevB.95.064409
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