• DocumentCode
    41583
  • Title

    Multiplets of Collective Spin-Wave Modes During Magnetization Reversal in a One-Dimensional Magnonic Crystal Consisting of Alternating-Width Nano-Stripes

  • Author

    Gubbiotti, G. ; Tacchi, S. ; Madami, M. ; Carlotti, G. ; Adeyeye, A.O. ; Samarin, S.N. ; Kostylev, Mikhail

  • Author_Institution
    Dipt. di Fis., Ist. Officina dei Mater. (IOM), Perugia, Italy
  • Volume
    49
  • Issue
    7
  • fYear
    2013
  • fDate
    Jul-13
  • Firstpage
    3089
  • Lastpage
    3092
  • Abstract
    We have studied the field evolution of spin waves frequency in a dense array of dipolarly interacting magnetic stripes of alternating widths during the magnetization reversal process by Brillouin light scattering technique. This represents a model system of a one-dimensional magnonic crystal which can sustain collective spin excitations. Their frequencies have been accounted for by a simple analytical approach when all the stripes are in the coaligned magnetization state. Each excitation of the array observed in the magnetically saturated state splits into either a doublet or a triplet in the field range where the inversion of the stripe magnetization takes place. This has been interpreted as due to the simultaneous presence, within the probed region, of clusters of adjacent stripes with either parallel or antiparallel magnetization.
  • Keywords
    Brillouin spectra; magnetisation reversal; magnons; nanomagnetics; nanostructured materials; spin waves; Brillouin light scattering technique; alternating-width nanostripes; antiparallel magnetization; coaligned magnetization state; collective spin excitations; collective spin-wave mode multiplets; dipolarly interacting magnetic stripe dense array; magnetically saturated state; magnetization reversal; model system; one-dimensional magnonic crystal; parallel magnetization; simple analytical approach; spin wave frequency; stripe magnetization; Arrays; Crystals; Frequency modulation; Magnetic hysteresis; Magnetic resonance; Magnetization; Stationary state; Brillouin light scattering; patterned magnetic films; spin waves;
  • fLanguage
    English
  • Journal_Title
    Magnetics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9464
  • Type

    jour

  • DOI
    10.1109/TMAG.2013.2246832
  • Filename
    6559225