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On-chip 7 GHz acousto-optic modulators for visible wavelengths

Optics 2025-11-14 v1 Applied Physics

Abstract

A chip-integrated acousto-optic phase modulator tailored for visible optical wavelengths has been developed. Utilizing the lithium niobate on sapphire platform, the modulator employs a 7 GHz surface acoustic wave, excited by an interdigital transducer and aligned perpendicular to the waveguide. This design achieves efficient phase modulation of visible light within a compact device length of merely 200 microns, while holds the advantages of easy fabrication and high stability due to simple unsuspended structure. Remarkably, in this high-frequency acoustic regime, the acoustic wavelength becomes comparable to the optical wavelength, resulting in a notable single-sideband modulation behavior. This observation underscores the phase delay effects in the acousto-optics interactions, and opens up new aspects for realizing functional visible photonic devices and its integration with atom- and ion-based quantum platforms.

Keywords

Cite

@article{arxiv.2411.15607,
  title  = {On-chip 7 GHz acousto-optic modulators for visible wavelengths},
  author = {Ji-Zhe Zhang and Yu Zeng and Qing Qin and Yuan-Hao Yang and Zheng-Hui Tian and Jia-Qi Wang and Chun-Hua Dong and Xin-Biao Xu and Ming-Yong Ye and Guang-Can Guo and Chang-Ling Zou},
  journal= {arXiv preprint arXiv:2411.15607},
  year   = {2025}
}

Comments

10 pages, 6 figures