pipette
ENEnglish

Resonance-enhanced integrated acousto-optic beam steering

Yue Yu, Qixuan Lin, Shucheng Fang, Joseph G. Thomas, Yibing Zhou, Zichen Xi, Jun Ji, Yizheng Zhu, Linbo Shao, Bingzhao Li, Mo Li

Revista con revisión por paresUso en el mundo real

En palabras de los autores

Optical beam steering is a key technology for free-space optical communication, sensing, and imaging. Mechanical beam steering systems suffer from limited scanning speed and bulky form factors, while existing solid-state solutions rely on pixelated synthetic aperture that requires complex fabrication and control architectures. Integrated acousto-optic beam steering is an emerging technology that enables continuous one-dimensional beam steering using integrated acoustic transducers and fixed-wavelength laser sources. Here, we integrate this approach with an optical ring resonator on the same thin-film lithium niobate platform to significantly enhance beam steering efficiency and system functionality. The resulting device achieves a resonance-enhanced beam steering efficiency of up to 26% and a field of view of 18∘. Moreover, by leveraging integrated electro-optic control, we dynamically lock the ring-resonator’s resonance to a chirped laser frequency, enabling frequency-modulated continuous-wave light detection and ranging operation. By combining lithium niobate’s piezoelectric and electro-optic properties, this work establishes a compact, efficient, and scalable beam-steering platform with co-integrated acousto-optic modulation and electro-optic control for multifunctional applications. The authors combine molecular-dimer calculations with simplified, coarse-grained simulations to predict the crystal structure of metal-organic cages and show how cage shape and the directionality of interactions influence the structures formed.

Resultado principalEl resumen no menciona limitaciones.

Apareció: lunes, 21 de septiembre. Nature Communications. Revista con revisión por pares.

DOI: 10.1038/s41467-026-77864-8