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Pis'ma v Zh. Èksper. Teoret. Fiz., 2012, Volume 95, Issue 7, Pages 397–402 (Mi jetpl2472)  

This article is cited in 9 scientific papers (total in 9 papers)

CONDENSED MATTER

Observation of self-modulation spin-wave instability in a one-dimensional magnonic crystal

A. V. Drozdovskii, B. A. Kalinikos

Leningrad State Electrotechnical University

Abstract: The emergence of the self-modulation instability of monochromatic microwave spin waves excited in a periodic magnetic film structure, a magnonic crystal, has been observed. The magnonic crystal was fabricated by chemically etching the surface a single-crystal yttrium-iron garnet film. The self-modulation instability has been observed at the frequencies corresponding to the band gaps of the spin-wave spectrum of the magnonic crystal caused by Bragg resonances. Above a certain threshold value of the input microwave signal, the time profile of the output pulses corresponds to envelope solitons.

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English version:
Journal of Experimental and Theoretical Physics Letters, 2012, 95:7, 357–361

Bibliographic databases:

Document Type: Article
Received: 02.02.2012

Citation: A. V. Drozdovskii, B. A. Kalinikos, “Observation of self-modulation spin-wave instability in a one-dimensional magnonic crystal”, Pis'ma v Zh. Èksper. Teoret. Fiz., 95:7 (2012), 397–402; JETP Letters, 95:7 (2012), 357–361

Citation in format AMSBIB
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    Citing articles on Google Scholar: Russian citations, English citations
    Related articles on Google Scholar: Russian articles, English articles

    This publication is cited in the following articles:
    1. Ustinov A.B., Drozdovskii A.V., Kalinikos B.A., “Solitony ogibayuschei i modulyatsionnaya neustoichivost spinovykh voln v magnonnykh kristallakh”, Izvestiya vysshikh uchebnykh zavedenii. prikladnaya nelineinaya dinamika, 20:5 (2012), 97–111  zmath  elib
    2. Kalinikos B.A., Ustinov A.B., “Nonlinear Spin Waves in Magnetic Films and Structures: Physics and Devices”, Recent Advances in Magnetic Insulators - From Spintronics to Microwave Applications, Solid State Phys., 64, eds. Wu M., Hoffmann A., Elsevier Academic Press Inc, 2013, 193–235  crossref  isi  elib  scopus
    3. Krawczyk M., Grundler D., “Review and Prospects of Magnonic Crystals and Devices with Reprogrammable Band Structure”, J. Phys.-Condes. Matter, 26:12 (2014), 123202  crossref  mathscinet  isi  scopus
    4. Grigoryeva N.Yu., Popov D.A., Kalinikos B.A., “Dipole-Exchange Spin Wave Spectrum in An Anisotropic Ferromagnetic Waveguide With a Rectangular Cross Section”, Phys. Solid State, 56:9 (2014), 1806–1816  crossref  adsnasa  isi  elib  scopus
    5. Mitrofanov A.A., Safin A.R., Udalov N.N., “Amplitude and Phase Noises of a Spin-Transfer Nano-Oscillator Synchronized By a Phase-Lock Loop”, Tech. Phys. Lett., 41:8 (2015), 778–780  crossref  adsnasa  isi  elib  scopus
    6. Ordonez-Romero C.L., Lazcano-Ortiz Z., Drozdovskii A., Kalinikos B., Aguilar-Huerta M., Dominguez-Juarez J.L., Lopez-Maldonado G., Qureshi N., Kolokoltsev O., Monsivais G., “Mapping of spin wave propagation in a one-dimensional magnonic crystal”, J. Appl. Phys., 120:4 (2016), 043901  crossref  isi  elib  scopus
    7. Z. Lazcano, C. L. Ordonez-Romero, G. Monsivais, “Inconsistencies of the Magnetostatic Approximation in the Description of a Bi-Component Magnonic Slab”, J. Magn. Magn. Mater., 438 (2017), 27–34  crossref  isi  scopus
    8. Monsivais G., Ordonez-Romero C.L., “Band Structure and Wannier-Stark Ladders in the Spin Wave Spectrum”, J. Magn. Magn. Mater., 466 (2018), 150–163  crossref  isi  scopus
    9. Richardson D., Kalinikos B.A., Carr L.D., Wu M., “Spontaneous Exact Spin-Wave Fractals in Magnonic Crystals”, Phys. Rev. Lett., 121:10 (2018), 107204  crossref  isi  scopus
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