English

Frequency locking in lasing ZnO nanowire pairs

Optics 2026-05-05 v1 Mesoscale and Nanoscale Physics

Abstract

Frequency locking between coupled laser systems provides a powerful mechanism for stabilizing and controlling coherent emission, yet its implementation and applicability down to the nanoscale remains unknown and unexplored. Here, we demonstrate optical coupling and frequency locking in closely spaced ZnO nanowire lasers operating in the extreme near field (gap < 10 nm). We observe both full and partial frequency locking, manifested as the alignment of all or a subset of the lasing modes, by spatially controlling the optical excitation. We also observe single-mode lasing in a coupled nanowire pair where the multi-mode lasing of individual nanowires is suppressed. In contrast to previously reported coupled-cavity nanowire lasers, where spectral control arises from static filtering mechanisms such as the Vernier effect, our results indicate a dynamically established relationship between actively lasing nanowires. These findings establish frequency locking as a robust and tunable mechanism in nanowire lasers, opening new routes toward stabilized and controllable nanoscale light sources for integrated nanophotonic systems.

Keywords

Cite

@article{arxiv.2605.02445,
  title  = {Frequency locking in lasing ZnO nanowire pairs},
  author = {Ann-Kathrin Kollak and Lukas R. Jäger and Hark Hoe Tan and Carsten Ronning},
  journal= {arXiv preprint arXiv:2605.02445},
  year   = {2026}
}

Comments

main part: 3 figures, 18 pages; SI: 5 figures, 4 pages

R2 v1 2026-07-01T12:48:19.282Z