Hybrid Integration of Quantum Cascade Lasers with Germanium-on-Silicon waveguides for Mid-Infrared Sensing Applications
Optics
2025-07-21 v1 Signal Processing
Applied Physics
Abstract
We present a novel scheme for hybrid integration of quantum cascade laser bars with germanium-on-silicon waveguides operating in the mid-infrared. The laser bars are flip-chip bonded onto a germanium-on-silicon target chip without active alignment, acheiving end-fire coupling efficiency of up to 45% (3.5 dB loss) in pulsed operation. Optical power estimates indicate 20-30 mW coupled into the waveguides. The passive alignment approach, combined with a CMOS-compatible photonic integrated circuit fabrication process, offers a scalable pathway to fully integrated mid-infrared photonic systems for sensing, free-space communications, and the realisation of novel light sources.
Keywords
Cite
@article{arxiv.2507.14003,
title = {Hybrid Integration of Quantum Cascade Lasers with Germanium-on-Silicon waveguides for Mid-Infrared Sensing Applications},
author = {Colin J. Mitchell and Longqi Zhou and Ke Li and Daniel Adeyemi and Ahmed Osman and Milos Nedeljkovic and Glenn Churchill and James C. Gates and Graham T. Reed and Kristian M. Groom and Jon Heffernan and Goran Mashanovich},
journal= {arXiv preprint arXiv:2507.14003},
year = {2025}
}
Comments
8 pages, 6 figures