High-throughput photonic packaging
Tymon Barwicz, Ted W. Lichoulas, et al.
OFC 2017
We present a chip-scale spectroscopic methane sensor, incorporating a tunable laser, sensor waveguides, and methane reference cell, assembled as a compact silicon photonic integrated circuit. The sensor incorporates an InP-based semiconductor optical amplifier/photodetector array, flip-chip soldered onto a silicon photonic substrate using highprecision waveguide-to-waveguide interfaces. The InP chip provides gain for a hybrid external cavity laser operating at 1650 nm. The sensor features a 20-cm-long TM-mode evanescent-field waveguide as the sensing element and is compatible with high-volume wafer-scale silicon photonics manufacturing and assembly processes. This sensor can be an enabling platform for economical methane and more general distributed environmental trace-gas monitoring.
Tymon Barwicz, Ted W. Lichoulas, et al.
OFC 2017
Yves Martin, Swetha Kamlapurkar, et al.
ECTC 2017
Douglas M. Gill, Jessie C. Rosenberg, et al.
AVFOP 2016
Yves Martin, Jae Woong Nah, et al.
ECTC 2016