Purpose
The project aims to address barriers limiting the development of highly relevant optoelectronic-based group-IV technologies and TXz-to-MIR technologies. The proposed THz-to-MIR compact photonic platforms will capitalize on recent advances in controlling the structural and optoelectronic properties of (Si)GeSN direct bandgap materials. The Micro-net will collectively advance research and establish new materials physics to develop an atomistic-level understanding of growth phenomena shaping the basic properties of (Si)GeSN-based nanoscale and quantum structures, develop devise structures to harness the optoelectronic and photonic properties of (Si)GeSn-based materials and optimize the performance of light emitters, detectors and sensing devices.
Corporation de l'Ecole Polytechnique de Montreal × National Defence
2 grants totalling $3.0M
Innovation for Defence Excellence and Security
12 grants totalling $18.0M
Related Grants
| Recipient | Amount | Program |
|---|---|---|
| Carleton University | $1.5M | Innovation for Defence Excellence and Se... |
| Université de Sherbrooke | $1.5M | Innovation for Defence Excellence and Se... |
| The University of British Columbia | $1.5M | Innovation for Defence Excellence and Se... |
| Corporation de l'Ecole Polytechnique de Montreal | $1.5M | Innovation for Defence Excellence and Se... |
| York University | $1.5M | Innovation for Defence Excellence and Se... |