Related Experiment Video
Updated: May 5, 2026

Fabrication of 1-D Photonic Crystal Cavity on a Nanofiber Using Femtosecond Laser-induced Ablation
Published on: February 25, 2017
3D nanoprinted hollow-core light cages for fiber-interfaced on-chip gas absorption spectroscopy
None:
The realization of compact on-chip devices with spectroscopic functionality is one central goal in modern photonics. Here, we present a fiber-interfaced on-chip light cage that combines seamless single-mode fiber integration with extended light-gas interaction lengths, enabling precise quantitative gas spectroscopy. By employing two detection schemes, this work establishes the light cage as a platform for laser absorption spectroscopy, realized through 3D nanoprinting of an anti-resonant hollow-core waveguide with side access. Optical characterization and benchmarking confirm reliable gas detection at ppm-level detection sensitivity in a miniaturized format. The platform offers broad potential for applications in environmental monitoring, medical diagnostics, and quantum technologies, and provides a versatile foundation for the development of next-generation hollow-core architectures.

