The Governors of the University of Calgary

$605,000.00 CAD

≈ 8 Canadians' average pay for a year
Department
National Research Council Canada
Program
Collaborative Science, Technology and Innovation Program - Collaborative R&D Initiatives
Recipient country
Canada
Fiscal year
2025-2026
Agreement period
March 26, 2026 – July 30, 2029
Reference
nrc-cnrc:172-2025-2026-Q4-1041013

Published purpose

The global effort to develop scalable quantum networks requires platforms that combine long coherence times with strong and controllable coupling to photonic circuits—capabilities that existing atomic and solid-state systems can only partially provide. While warm/cold atomic gases and single-atom traps offer excellent coherence, they are difficult to integrate into compact photonic systems, and solid-state colour centres face challenges such as phonon sidebands, spectral diffusion, or the need for sub-Kelvin temperatures. Molecular systems, and lanthanide complexes in particular, offer a transformative opportunity: their local chemical environment can be precisely engineered to minimize decoherence, suppress non-radiative decay, and support both ensemble-based quantum memories and singleemitter qubits. Early demonstrations of long optical and spin coherence in lanthanide complexes highlight the strong potential of this emerging platform for quantum networking, sensing, and communication.

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View official source record Imported July 30, 2026 from open.canada.ca Grants & Contributions