Up to 30% off — ends 2 Aug
ONLY00h00m00s
Up to 30% off — ends 2 Aug
ONLY00h00m00s
John JL Morton
3 months ago
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Microwave Quantum Memories: Spin-Based Storage for Superconducting Qubits University College London in United Kingdom
Degree Level
PhD
Field of study
Electrical Engineering
Funding
Full funding availableDeadline
Year round applications
Country
United Kingdom
University
University College London

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About this position
This PhD project at University College London (UCL) focuses on the development of spin-based microwave quantum memories, a key technology for hybrid quantum systems. The research aims to connect superconducting qubits—well-suited for quantum logic gates—with electron spins, which offer exceptionally long coherence times, to create high-efficiency, long-lived quantum memories. These systems operate in the microwave domain, enabling the strong coupling of highly coherent spins to high Q-factor superconducting cavities, effectively acting as storage registers for superconducting qubits.
As a doctoral researcher, you will work on measuring and optimizing the coherence times of spin defects in various material systems, developing and validating superconducting resonator and circuit designs for strong coupling, and demonstrating techniques for microwave photon storage and retrieval within spin-based memories. The project is highly interdisciplinary, combining elements of quantum mechanics, materials science, and electronic engineering.
The position is based in the Department of Electronic and Electrical Engineering at UCL, a world-leading department with a rich history and outstanding research output. The primary supervisor is Professor John JL Morton, a leading expert in quantum technologies and nanotechnology. The research environment is inclusive and diverse, welcoming applicants from all backgrounds, especially those underrepresented in engineering.
This is a fully funded 3.5-year studentship open to both Home and International students (including EU), covering stipend and tuition fees. Applicants should have a strong background in physical sciences or engineering, with preferred experience in magnetic resonance, RF or microwave systems, 2D materials, or quantum technologies and quantum control. Creativity and technical ambition are highly valued.
Applications are accepted year-round until a suitable candidate is found. To apply, use the UCL online application system and mark your application for the attention of Prof John Morton. Include a brief summary of your research interests and how your background fits the project. For informal inquiries, contact Prof Morton at [email protected].
For more information about the department and UCL, visit the provided links. UCL is a top-ranked, multidisciplinary university located in the heart of London, offering a vibrant academic community and excellent research facilities.
Funding details
Full funding including tuition fees and living expenses is available for this position. The scholarship covers all educational costs and provides a monthly stipend.
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