English

Magnon-mediated microwave to optical time dynamics

Optics 2026-05-25 v1 Quantum Physics

Abstract

Optomagnonic modulation techniques are an emerging platform for information transfer from the microwave to the optical domain. However, these techniques focus largely on the spectral domain of the transduced signal. Given the potential of the field to bridge the gap between microwave and optical signals, analyzing and studying the interactions real-time in temporal domain becomes equally essential. In this work, we exploit the optomagnonic modulation in a YIG microsphere to demonstrate and study microwave to optical real-time dynamic transfer on a time scale comparable to the decay of magnons. We inductively excite magnons in the microwave domain and use magnon-based Brillouin light scattering to transduce the signature of excited magnonic waveforms to the optical domain. The square type modulation of the magnons is retrieved in the corresponding optical sidebands. Our work enables real-time measurement of the magnonic dynamics and therefore direct access to lifetime measurements of the magnonic mode. Providing insight into the temporal dynamics of magnons, this work can open up new promising research directions such as in magnon coupled superconducting qubits or magnon-based Brillouin memory.

Keywords

Cite

@article{arxiv.2605.22772,
  title  = {Magnon-mediated microwave to optical time dynamics},
  author = {Rajkumar Jadhav and Xinglin Zeng and Cedric Traub and Fabian Engelhardt and Abdullah Alabbadi and Arghadeep Pal and Pascal Del'Haye and Silvia Viola Kusminskiy and Birgit Stiller},
  journal= {arXiv preprint arXiv:2605.22772},
  year   = {2026}
}

Comments

14 pages, 7 figures

R2 v1 2026-07-22T07:26:47.972Z