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Nano-patterned magnonic crystals based on ultrathin YIG films

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arxiv 1705.02267 v1 pith:H3XUH632 submitted 2017-05-05 cond-mat.mes-hall

Nano-patterned magnonic crystals based on ultrathin YIG films

classification cond-mat.mes-hall
keywords spinwavesmagnonicattenuationcharacteristicsachievedassociatedband
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We demonstrate a microscopic magnonic-crystal waveguide produced by nano-patterning of a 20 nm thick film of Yttrium Iron Garnet. By using the phase-resolved micro-focus Brillouin light scattering spectroscopy, we map the intensity and the phase of spin waves propagating in such a periodic magnetic structure. Based on these maps, we obtain the dispersion and the attenuation characteristics of spin waves providing detailed information about the physics of spin-wave propagation in the magnonic crystal. We show that, in contrast to the simplified physical picture, the maximum attenuation of spin waves is achieved close to the edge of the magnonic band gap, which is associated with non-trivial reflection characteristics of spin waves in non-uniform field potentials.

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