English

Traveling surface spin-wave resonance spectroscopy using surface acoustic waves

Materials Science 2016-03-10 v3

Abstract

Coherent gigahertz-frequency surface acoustic waves (SAWs) traveling on the surface of a piezoelectric crystal can, via the magnetoelastic interaction, resonantly excite traveling spin waves in an adjacent thin-film ferromagnet. These excited spin waves, traveling with a definite in-plane wave-vector q enforced by the SAW, can be detected by measuring changes in the electro-acoustical transmission of a SAW delay line. Here, we provide a first demonstration that such measurements constitute a precise and quantitative technique for spin-wave spectroscopy, providing a means to determine both isotropic and anisotropic contributions to the spin-wave dispersion and damping. We demonstrate the effectiveness of this spectroscopic technique by measuring the spin-wave properties of a Ni thin film for a large range of wave vectors,q = 2.5 x 10^4 - 8 x 10^4 cm^(-1), over which anisotropic dipolar interactions vary from being negligible to quite significant.

Keywords

Cite

@article{arxiv.1506.03056,
  title  = {Traveling surface spin-wave resonance spectroscopy using surface acoustic waves},
  author = {Praveen G. Gowtham and Takahiro Moriyama and Daniel C. Ralph and Robert A. Buhrman},
  journal= {arXiv preprint arXiv:1506.03056},
  year   = {2016}
}

Comments

29 pages with 8 figures

R2 v1 2026-06-22T09:50:28.573Z