Postdoctoral Research Associate in Quantum Sensing with Molecular Spin Qubits
Listed on 2026-08-22
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Research/Development
Research Scientist, Biomedical Science, Biotechnology
Overview
Molecular spins combine the coherence, optical readout, and room-temperature operation of solid-state spin qubits with the atomistic tunability and nanoscale modularity of synthetic chemistry. You will use this combination to develop a new class of quantum sensors for biosensing and nanoscale magnetic resonance.
BackgroundOptically addressable spins—most prominently the nitrogen-vacancy centre in diamond—have demonstrated the promise of spin-based quantum-sensing, e.g., sub-cellular magnetic-resonance spectroscopy under ambient conditions. However, quantum sensing involves a delicate balance: coherence thrives far from external influences, while proximity and strong interactions with targets optimise their detection.
Molecular spins offer a compelling balance of such demands. At ~1 nm size, they open unprecedented target proximity, and chemical techniques allow them to be attached to desired locations, engineered for stronger coupling to sensing fields, and tuned atom-by-atom. We have established such systems as a distinctive quantum-sensing platform [see e.g., Phys. Rev. Lett. 133, 120801 (2024); JACS 147, 22911 (2025);
MRS Bulletin 51, 312 (2026); arXiv:; chem
Rxiv.].
You will deploy advanced spin-optical measurements—including pulsed optically detected magnetic resonance—on molecular spins in both ground and excited states. You will advance their capabilities for nanoscale measurement and control, enhanced couplings to sensing fields, room-temperature operation, and deployment as practical quantum probes. You will focus on quantum measurement, with molecules synthesised by collaborators.
What we offer- Vibrant team*—more than ten researchers spanning physics, chemistry, quantum engineering, and materials science.
- State-of-the-art experimental capabilities*—including single-spin confocal pulsed ODMR from 4-300 K.
- World-class collaborators*—including at Imperial, Cambridge, Tokyo, with opportunities for lab visits.
- Career development*—conference travel, support for independent Fellowship applications, PhD-student co-supervision.
- A PhD in physics/chemistry/materials science/engineering/a related discipline.
- Experimental experience with spin systems and their control—e.g., spin resonance, solid-state defects.
- See below for further details
We particularly welcome applications from candidates from groups historically under-represented in STEM, and are committed to fostering an inclusive, supportive, and flexible working environment.
Job PurposeTo make a leading contribution to a project Developing Quantum Sensing with Molecular Spin Qubits working with Dr. Sam Bayliss. The successful candidate will also be expected to contribute to the formulation and submission of research publications and research proposals as well as help manage and direct this complex and challenging project as opportunities allow.
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