Recipient
University of WaterlooDepartment
National Research Council CanadaAmount
$168.8K
Province
ONType
Grant
Agreement Number
172-2021-2022-Q4-988511
Purpose
A new material platform based on hole Ge/SiGe structures for quantum applications will be developed. This material is fully compatible with the large-scale state-of-the–art silicon foundries for mass production and also has a number of attractive superior properties compared to other material systems. Quantum dot devices containing just a few holes will be developed. A special attention will be paid to improved sensitivity and the bandwidth of quantum spin-readout sensors based on Superconducting Quantum Interference Devices (SQUID). A fast sensitive readout is critical in quantum technologies for coping with 1/f noise and for fast high fidelity quantum protocols to process quantum information stored in spin qubits.
University of Waterloo × National Research Council Canada
102 grants totalling $37.9M
Collaborative Science, Technology and Innovation Program - Collaborative R&D Initiatives
1,000 grants totalling $355.2M
Related Grants
| Recipient | Amount | Program |
|---|---|---|
| University of Ottawa | $3.6M | Collaborative Science, Technology and In... |
| University of Ottawa | $3.6M | Collaborative Science, Technology and In... |
| University of Ottawa | $3.6M | Collaborative Science, Technology and In... |
| University of Ottawa | $3.6M | Collaborative Science, Technology and In... |
| The Governing Council of the University of Toronto | $3.0M | Collaborative Science, Technology and In... |