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Find similar grantsQuantum Technologies Discovery Phase is sponsored by New Zealand Institute for Advanced Technology (NZIAT) / Ministry of Business, Innovation & Employment (MBIE). This discovery phase, part of the NZIAT's initiatives, explores a national quantum technologies (QT) research platform.
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Quantum Technologies Aotearoa | Te Whai Ao — Dodd-Walls Centre Quantum Technologies Aotearoa Under the QTA programme, our globally renowned quantum scientists are collaborating internationally to tackle the latest challenges arising in quantum technology - including computation, networking, quantum memories, free space optical communication, sensing and qubit reading.
The Quantum Technologies Aotearoa (QTA) programme capitalises on New Zealand’s fundamental research leadership. It is run by Te Whai Ao — Dodd-Walls-Centre, with a $12m Ministry of Business, Innovation and Employment (MBIE) Catalyst Strategic grant 2024-2028. Made up of projects in two tranches, the programme aims to foster international collaboration and to accelerate domestic capability.
QTA collaborators include the Joint Quantum Institute (USA), the Centre for Quantum Technologies(Singapore), the German Aerospace Centre and the UK Quantum Technology Hub in Computing and Simulation as well as Korea’s Advanced Institute of Science & Technology (KAIST). Accordingly, the QTA team also manages the Catalyst Strategic NZ–Korea Joint Research Partnerships.
This programme has funded three joint projects in 2025, with a focus on quantum communication. Republic of Korea Joint Research Projects Advanced seafloor cable-based sensing in the South Pacific: A pathway to real-time hazard monitoring Building the quantum internet - microwave to optical transduction in an electro-optic platform.
Chip-integrated high-fidelity squeezed light source for secure quantum communication Developing Energy Efficient Fast Memory for Quantum Computers Devices for Quantum Computing Applications Early Stage Quantum Networking Entangling Atoms to Measure Magnetic Fields Exploring the Quantum Optics of Chip Scale Lasers Magnetic field sensing with individual dysprosium atoms Magnetic thin film materials for rare earth dopant-based quantum technologies Microwave - Optical Transduction: a Practical Electro-Optic Implementation Quantum-enabled Rydberg atomic polarimetry of radio-frequency fields - A new paradigm for antenna characterisation Quantum Enhanced Probabilistic Computing in Symmetry-Broken Resonators Rare-earth nitride π-Josephson junctions as elements in superconducting quantum logic circuits Rare earth quantum memories embedded in photonic integrated circuits Seafloor Cable–Based Sensing Revolutionising Ocean Monitoring Transduction of electrically driven single photons: Surface acoustic waves meet whispering gallery mode resonators Advanced seafloor cable-based sensing in the South Pacific: A pathway to real-time hazard monitoring Building the quantum internet - microwave to optical transduction in an electro-optic platform.
Magnetic field sensing with individual dysprosium atoms Magnetic thin film materials for rare earth dopant-based quantum technologies Quantum-enabled Rydberg atomic polarimetry of radio-frequency fields - A new paradigm for antenna characterisation Quantum Enhanced Probabilistic Computing in Symmetry-Broken Resonators Rare-earth nitride π-Josephson junctions as elements in superconducting quantum logic circuits Republic of Korea Joint Research Projects The Catalyst Strategic NZ–Korea Joint Research Partnerships programme has funded three joint projects in 2025, each for up to NZ$450,000 over three years.
They focus on quantum communication - a rapidly advancing field with transformative potential for secure data and future technologies.
Chip-integrated high-fidelity squeezed light source for secure quantum communication Rare earth quantum memories embedded in photonic integrated circuits Transduction of electrically driven single photons: Surface acoustic waves meet whispering gallery mode resonators Developing Energy Efficient Fast Memory for Quantum Computers Devices for Quantum Computing Applications Early Stage Quantum Networking Entangling Atoms to Measure Magnetic Fields Exploring the Quantum Optics of Chip Scale Lasers Microwave - Optical Transduction: a Practical Electro-Optic Implementation Seafloor Cable–Based Sensing Revolutionising Ocean Monitoring The Dodd-Walls Centre research focus is photonics, the generation, transmission, and manipulation of light, and the study of matter and energy at the quantum level.
According to the current listing, eligibility includes: The discovery phase focuses on exploring QT capabilities and opportunities; future programs may emerge for businesses in quantum technologies. }. Confirm the full requirements in the official notice before applying.
Quantum Technologies Discovery Phase is funded by New Zealand Institute for Advanced Technology (NZIAT) / Ministry of Business, Innovation & Employment (MBIE). Verify program details on the funder's official page before applying.
Start from the official opportunity page linked in this listing — it carries the sponsor's submission instructions.
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