4.5 Article

Band gaps and transmission spectra in generalized Fibonacci σ(p, q) one-dimensional magnonic quasicrystals

Journal

JOURNAL OF PHYSICS-CONDENSED MATTER
Volume 25, Issue 28, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/0953-8984/25/28/286002

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Funding

  1. CAPES
  2. CNPq

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We employ a microscopic theory to investigate spin wave (magnon) propagation through their dispersion and transmission spectra in magnonic crystals arranged to display deterministic disorder. In this work the quasiperiodic arrangement investigated is the well-known generalized Fibonacci sequence, which is characterized by the sigma(p, q) parameter, where p and q are non-zero integers. In order to determine the bulk modes and transmission spectra of the spin waves, the calculations are carried out for the exchange dominated regime within the framework of the Heisenberg model and taking into account the random phase approximation. We have considered magnetic materials that have a ferromagnetic order, and the transfer-matrix treatment is applied to simplify the algebra. The results reveal that spin wave spectra display a rich and interesting magnonic pass- and stop-bands structures, including an almost symmetric band gap distribution around of a mid-gap frequency, which depends on the Fibonacci sequence type.

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