Sub-Diffraction Optical Confinement for Enhanced Second-Harmonic Generation in Suspended Thin-Film Lithium Niobate Nano-Cavity
Artikel i vetenskaplig tidskrift, 2026

Confining light beyond the diffraction limit is critical in a plethora of important applications, including nano-lasing, sensing, imaging, and particularly nonlinear optics, as it is essential for enhancing conversion efficiency. Plasmonic resonances can provide superior field confinement, but inherently suffer from ohmic losses and thermal damage. Implementing deep-subwavelength optical confinement in all-dielectric materials for enhanced light-matter interactions devoid of these drawbacks is appealing yet challenging. Here, we demonstrate significant enhancement of second-harmonic generation (SHG) in a bowtie nanostructure embedded within a suspended thin-film lithium niobate (TFLN) circular Bragg grating (CBG) cavity. The ultrasmall mode volume reaches less than (Formula presented.). The CBG nanocavity exhibits a high normalized conversion efficiency of (Formula presented.) under the pump intensity of (Formula presented.). An SHG enhancement factor of approximately 3,720 compared to bare TFLN is realized. This approach paves the way for nonlinear nanodevices for robust sub-diffraction light–matter interaction in an ultra-compact and lossless dielectric platform.

nano cavity

sub-diffraction enhancement

deep subwavelength

thin-film lithium niobate

second-harmonic generation

Författare

Zengya Li

Nano- och biofysik 1

Shanghai Jiao Tong University

Zhuoran Hu

Shanghai Jiao Tong University

Weihao Wu

Shanghai Jiao Tong University

Guangfeng Wang

Shanghai Jiao Tong University

Hao Li

Shanghai Jiao Tong University

Shijie Liu

Shanghai Jiao Tong University

Bo Wang

Shanghai Jiao Tong University

Yuanlin Zheng

Shanghai Jiao Tong University

Chinese Academy of Sciences

Xianfeng Chen

Shanghai Jiao Tong University

Chinese Academy of Sciences

Shandong Normal University

Laser and Photonics Reviews

1863-8880 (ISSN) 1863-8899 (eISSN)

Vol. 20 17 e71263

Ämneskategorier (SSIF 2025)

Atom- och molekylfysik och optik

Den kondenserade materiens fysik

Annan fysik

DOI

10.1002/lpor.71263

Mer information

Senast uppdaterat

2026-09-10