Recipient
McGill University|Université McGillDepartment
Canadian Space AgencyAmount
$270.3K
Province
QCType
Grant
Agreement Number
003-2025-2026-Q4-00069
Purpose
The primary objective of this project is to develop and validate laser-thermal propulsion for spacecraft, leveraging affordable fibre optic lasers and a phased-array system to achieve faster and safe travel to Mars and deep space. Key deliverables include designing and testing a fully integrated thruster system—enhanced by recent breakthroughs in propellant absorption—within a space simulation chamber, engineering a novel inflatable optical concentrator for precise laser energy focusing, and employing high-performance computing to model energy transfer and thrust generation. The project also aims to demonstrate readiness for in-space deployment, with immediate applications in orbit transfer, station-keeping, and debris remediation, while providing hands-on training to students in collaboration with aerospace experts to ensure graduates are proficient in modern spaceflight engineering practices.
McGill University|Université McGill × Canadian Space Agency
26 grants totalling $6.1M
Class Grant and Contribution Program to Support Research, Awareness and Learning in Space Science and Technology
1,000 grants totalling $324.1M
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