Resonant generation of propagating second-harmonic spin waves in nano-waveguides
arXiv:2402.18964 · doi:10.1038/s41467-024-46108-y
Abstract
Generation of second-harmonic waves is one of the universal nonlinear phenomena that have found numerous technical applications in many modern technologies, in particular, in photonics. This phenomenon also has great potential in the field of magnonics, which considers the use of spin waves in magnetic nanostructures to implement wave-based signal processing and computing. However, due to the strong frequency dependence of the phase velocity of spin waves, resonant phase-matched generation of second-harmonic spin waves has not yet been achieved in practice. Here, we show experimentally that such a process can be realized using a combination of different modes of nano-sized spin-wave waveguides based on low-damping magnetic insulators. We demonstrate that our approach enables efficient spatially-extended energy transfer between interacting waves, which can be controlled by the intensity of the initial wave and the static magnetic field. The demonstrated approach can be used for the generation of short-wavelength spin waves that are difficult to excite directly, as well as for the implementation of novel devices for magnonic logic and unconventional computing.
This preprint has not undergone peer review or any post-submission improvements or corrections. The Version of Record of this article is published in Nature Communications, and is available online at https://doi.org/10.1038/s41467-024-46108-y
References in corpus (4)
- Ultra Thin Films of Yttrium Iron Garnet with Very Low Damping: A Review
- Nonlinear emission of spin-wave caustics from an edge mode of a micro-structured Co2Mn0.6Fe0.4Si waveguide
- Nonlocal detection of interlayer three-magnon coupling
- Local non-linear excitation of sub-100 nm bulk-type spin waves by edge-localized spin waves in magnetic films
Cited by in corpus (5)
- Resonant inter-mode second harmonic generation by backward spin waves in YIG nano-waveguides
- Highly efficient coherent amplification of zero-field spin waves in YIG nano-waveguides
- Nonlinear suppression of dispersion broadening of ultrashort spin-wave pulses in thin YIG films
- Stimulated Magnonic Frequency Combs
- Nonlinear spin-Wave Doppler effect for flexible tuning of magnonic frequencies