English

Spin-wave dynamics controlled by tunable ac magnonic crystal

Materials Science 2023-05-18 v1

Abstract

The magnonic crystal, which has a spatial modulation wave vector qq, couples the spin wave with wave vector kk to the one with wave vector kqk-q. For a conventional magnonic crystal with direct current (dc) supply, the spin waves around q/2q/2 are resonantly coupled to the waves near q/2-q/2, and a band gap is opened at k=±q/2k=\pm q/2. If instead of the dc current the magnonic crystal is supplied with an alternating current (ac), then the band gap is \emph{shifted} to kk satisfying ωs(k)ωs(kq)=ωac|\omega_{s}(k)-\omega_{s}(k-q)|=\omega_{ac}; here ωs(k)\omega_{s}(k) is the dispersion of the spin wave, while ωac\omega_{ac} is the frequency of the ac modulation. The resulting gap in the case of the ac magnonic crystal is the half of the one caused by the dc with the same amplitude of modulation. The time evolution of the resonantly coupled spin waves controlled by properly suited ac pulses can be well interpreted as the motion on a Bloch sphere. The tunability of the ac magnonic crystal broadens the perspective of spin-wave computing.

Keywords

Cite

@article{arxiv.2305.09876,
  title  = {Spin-wave dynamics controlled by tunable ac magnonic crystal},
  author = {Ankang Liu and Alexander M. Finkel'stein},
  journal= {arXiv preprint arXiv:2305.09876},
  year   = {2023}
}

Comments

6 pages, 4 figures

R2 v1 2026-06-28T10:36:34.687Z