Spin-Wave Frequency Multiplication by Magnetic Vortex Cores.

Wang, Cheng-Jie; Li, Yuxin; Ding, Zhe; Wang, Pengfei; Shi, Fazhan; Du, Jiangfeng · Nano Lett · 2026

basic_science · Level V

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Abstract

Frequency multiplication involves generating harmonics from an input frequency, a technique particularly useful for integrating spin-wave devices operating at different frequencies. While topological magnetic textures offer distinct advantages in spin-wave applications, frequency multiplication has not yet been observed in these structures. Here, we study the magnetization dynamics of magnetic vortices formed in micron-sized disks via wide-field magnetic imaging. We found the occurrence of coherent spin-wave harmonics arising from the gyration of vortex cores driven by microwave fields. This phenomenon reveals a universal mechanism where the periodical motion of delta function-like objects such as vortex cores gives rise to a frequency comb. Our results pave the way for creating nanoscale, tunable spin-based frequency multipliers and open new possibilities for developing miniature frequency combs in a variety of systems.