University Laval
$300,000.00 CAD
- Department
- Canadian Space Agency
- Recipient country
- Canada
- Fiscal year
- 2019-2020
- Agreement period
- March 26, 2020 – March 31, 2024
- Reference
- csa-asc:003-2020-2021-Q1-04446
Published purpose
Advances in space-based instruments for planetary observation involve significant costs. Fortunately, suborbital balloon flights enable the development and testing of instrumentation in space-like conditions at a fraction of the cost of full-fledged orbiting space instruments. Building on previous work, this project aims to demonstrate and evaluate the performance of adaptive optics systems in space-like conditions. Test will done on a high-resolution deformable mirror within a closed-loop adaptive optics system and a camera with passive thermal control in the stratosphere. Furthermore, data on atmospheric turbulence will be gathered in full night and at sunrise at a height of 36 to 40 km. HiCIBaS-II is a great opportunity to maintain Canadian world-leadership in this area, while advancing knowledge and training the next generation of highly qualified personnel that the industry requires.
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