Senior Quantum Engineer - QSER
Oxford Quantum Circuits
| Company | Oxford Quantum Circuits |
| Category | Uncategorised |
| Location | Reading |
| Remote | Hybrid |
| Employment | Full-time |
| Level | Not stated |
| Salary | Not stated by the employer |
| Posted | 31 Jul 2026 |
| Last verified | 31 Jul 2026 |
| Source | Employer career page (workable) |
Description
Senior Quantum Engineer - QSER At OQC, we aren’t just theorising about the future; we’re building it. Born from a philosophy of bold innovation, we’ve successfully transitioned quantum computing from an academic dream into a commercial reality. The most exciting thing is that we’re just getting started. The Purpose Lead scientific research that advances OQC’s quantum processors, superconducting circuit technology and supporting infrastructure. As a Senior Quantum Engineer, you’ll own complex research projects across the full scientific lifecycle—from identifying research priorities and designing experiments through to implementation, data analysis and final recommendations. Your work will directly influence OQC’s technology roadmap and the performance of future quantum processing units. The Role You’ll be a senior member of our Quantum Science & Exploratory Research team, combining hands-on experimental research with technical leadership, project ownership and mentoring. Working across superconducting quantum circuits, processor characterisation, calibration, benchmarking and cryogenic measurement systems, you’ll investigate the limitations of existing technologies and explore new approaches to qubit design, packaging and quantum-processing infrastructure. You’ll also help shape the QSER roadmap, coordinate the resources required to deliver experimental programmes and support the development of Quantum Engineers across the team. What You’ll Be Working On Lead complex scientific research projects from initial concept and experimental design through to implementation, analysis, reporting and technical recommendations. Design, simulate and characterise novel superconducting components for quantum processors and their supporting infrastructure. Measure, calibrate and benchmark superconducting quantum circuits, developing performance metrics and investigating QPU design or processor limitations. Lead investigations into alternative qubit architectures and packaging approaches, translating experimental evidence into recommendations for future development. Coordinate the scheduling and resourcing of quantum-processing infrastructure, including multiple cryogenic systems, control electronics and measurement equipment. Shape the QSER technology roadmap by reporting progress, assessing the feasibility of milestones and recommending future scientific priorities. Mentor Quantum Engineers, maintain high-quality project documentation and represent OQC through conferences, research collaborations and scientific publications. What We’re Looking For A degree in physics, quantum engineering, electrical engineering or another relevant discipline, or equivalent professional experience. Experience owning research projects involving the measurement, characterisation or operation of quantum systems. Hands-on experience running experimental quantum-computing measurements, benchmarking processes or operational methods within an academic or industrial environment. Experience creating or running simulations of the quantum or radio-frequency properties of superconducting circuits. Strong scientific software-development skills, particularly Python or a comparable language, for experimental automation and data analysis. The ability to analyse complex datasets, develop meaningful performance metrics and translate results into clear technical recommendations. Strong project leadership or project-management skills, including an understanding of resource, scheduling and budget implications. Excellent written and verbal communication skills, with the ability to distil complex scientific information for different technical audiences. A creative and evidence-led approach to problem-solving, combined with sound scientific judgement and strong planning skills. The ability to influence technical direction, delegate effectively and support the development of less-experienced
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