Bragg resonances of magnetostatic surface spin waves in a layered structure: Magnonic crystal-dielectric-metal

It is experimentally shown that metal cladding of the surface of a one-dimensional magnonic crystal destroys the Bragg band gaps in microwave transmission spectra of propagating magnetostatic surface spin waves in magnonic crystal. This is a consequence of violating a phase synchronism condition of...

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Veröffentlicht in:Applied physics letters 2012-06, Vol.100 (25)
Hauptverfasser: Beginin, E. N., Filimonov, Yu. A., Pavlov, E. S., Vysotskii, S. L., Nikitov, S. A.
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container_title Applied physics letters
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creator Beginin, E. N.
Filimonov, Yu. A.
Pavlov, E. S.
Vysotskii, S. L.
Nikitov, S. A.
description It is experimentally shown that metal cladding of the surface of a one-dimensional magnonic crystal destroys the Bragg band gaps in microwave transmission spectra of propagating magnetostatic surface spin waves in magnonic crystal. This is a consequence of violating a phase synchronism condition of forward and reflected by a magnonic crystal magnetostatic surface wave. When a magnetostatic surface wave propagates in a layered structure, ferromagnetic film with a magnonic crystal-dielectric layer-metal cladding this synchronism condition can also be fulfilled, not depending on the thickness of a dielectric layer.
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title Bragg resonances of magnetostatic surface spin waves in a layered structure: Magnonic crystal-dielectric-metal
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