250 Gbps 10-channel WDM silicon photonics receiver
Huapu Pan, Solomon Assefa, et al.
GFP 2012
Using a custom-built laser direct writing system, single-mode polymer optical waveguides, and devices for board-level optical interconnects were fabricated. A novel photopatternable polysiloxane material was developed that combines low-loss, simple, and large-area processability, and reliability during manufacturing and system operation. The polysiloxane waveguides were designed with quadratic cross sections of 5.5 × 5.5 μm2 and a refractive index contrast of 0.0086 between core and cladding polymer for single-mode operation at the wavelength of 1.3 μm. A straight waveguide propagation loss of 0.28 dB/cm was achieved. A wide range of passive optical devices, including Y-splitters, directional couplers, and Mach-Zehnder interferometers were successfully fabricated and characterized. The results prove that the presented combination of material and process technology is a viable implementation for short distance board-level optical links. © 2014 IEEE.
Huapu Pan, Solomon Assefa, et al.
GFP 2012
Folkert Horst, William M. J. Green, et al.
IEEE Photonics Technology Letters
Roger F. Dangel, Bert J. Offrein, et al.
SPIE Photonics Fabrication Europe 2002
Antonio La Porta, Jonas Weiss, et al.
ECTC 2015