3.8 Article

Broadband phonon to magnon conversion in yttrium iron garnet

期刊

MATERIALS FOR QUANTUM TECHNOLOGY
卷 1, 期 1, 页码 -

出版社

IOP Publishing Ltd
DOI: 10.1088/2633-4356/abd016

关键词

magnetism; magnonics; spin waves; yttrium iron garnet; acoustics; quantum information; information technology

资金

  1. The authors wish to thank B Hillebrands for very helpful discussions and C Tock and A Inglis for technical assistance. T C Fung acknowledges the EPSRC's support of his DPhil studentship. A D Karenowska acknowledges the support of EPSRC grant EP/K02690/1. [EP/K02690/1]
  2. EPSRC

向作者/读者索取更多资源

The study introduces and experimentally demonstrates a method for broadband phonon-magnon interconversion by combining magnetoelastic coupling with translational symmetry breaking in YIG. This quasiparticle coupling mechanism has potential applications in hybrid solid-state quantum computing devices and low-power wave-based classical computing architectures.
We propose and experimentally demonstrate a means of broadband phonon-magnon interconversion that relies on combining magnetoelastic coupling with translational symmetry breaking in the important experimental material yttrium iron garnet (YIG). As well as being of interest for its basic physics, this quasiparticle coupling mechanism adds to the range of effects that potentially find useful application in hybrid solid-state quantum computing devices as well as low-power wave-based classical computing architectures.

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