Research Scientist in Quantum Photonic Integration
Role details
Job location
Tech stack
Job description
Photonic chip development
- Devise and implement new concepts for photonic chips for quantum communications.
- Conceive and implement new experiments and new protocols for quantum communications.
- Measure, characterise, validate and optimise the performance of photonic chips and demonstrate their suitability for large-scale deployment.
- Apply the security analysis frameworks for quantum key distribution and quantum random number generation to validate and benchmark photonic integrated devices and systems.
System integration
- Contribute to the development of high-performance quantum photonic system prototypes based on photonic integrated circuits.
- Work within a multi-disciplinary team to develop innovative approaches for packaging and system integration of quantum photonic chips, including optical and electrical interconnects, electronic control, high-speed signal processing, software and firmware.
- Develop system control, automation, synchronisation, simulation, and data analysis.
Collaboration & Dissemination
- Analyse experimental data and communicate findings through peer-reviewed scientific publications, internal reviews, and major international conferences.
- Collaborate with industrial partners and academic groups across the UK, Europe, and Japan.
- Mentor PhD students and earlycareer staff researchers.
Requirements
The ideal candidate will have a strong background in photonic integrated circuits and/or quantum technologies, with a proven track record of delivering high-impact research, the motivation to lead challenging research and development projects in a multidisciplinary environment, and the ability to work effectively with internal and external collaborators in a multidisciplinary environment. Research outcomes will be published in leading peer-reviewed scientific journals and presented at major international conferences. Technology developments will directly contribute to Toshiba's roadmap for the marketisation of chip-based quantum communications products., * PhD in Physics, Photonics, Electronic Engineering, or a closely related field.
- Proven academic or industrial research experience in one or more of the following areas:
- Photonic integrated circuits, hybrid photonic integration, photonic device design, simulation, modelling, and characterisation.
- Quantum communications, quantum key distribution (QKD), quantum networks, or quantum photonics.
- High-speed coherent optical communication systems.
- Photonic packaging, micro-optics, nanofabrication, or advanced photonic assembly technologies.
- Hands-on experience in the development and operation of advanced photonic experimental setups and proficiency with RF test and measurement techniques.
- Proficiency in Python, MATLAB, LabVIEW, or equivalent programming languages for laboratory automation, system control, simulation, and data analysis.
- Strong analytical and critical thinking skills, with the ability to identify technical challenges and develop creative and innovative solutions to overcome them.
- Demonstrated ability to recognise the potential value of novel physical phenomena, technologies, and concepts, and translate them into practical and commercially relevant solutions.
- Ability to work effectively both independently and collaboratively within a multidisciplinary team.
- Excellent written and verbal communication skills, including scientific publications, technical presentations, technical reporting, and proposal writing.
- Proactive, highly organised, and capable of leading challenging technical projects to successful outcomes.
Skills and Experience Desirable
- Experience with photonic foundry processes, PIC tape-outs, and engagement with fabrication and integration partners.
- Experience with photonic integration platforms, including silicon photonics, silicon nitride, indium phosphide, lithium niobate and heterogeneous integration technologies.
- Experience with electronics development and system integration, including PCB design, FPGA programming, embedded systems, or high-speed electronics.
- Theoretical knowledge of quantum key distribution, quantum information security, quantum networking, or quantum information processing.
- Experience generating intellectual property, including invention disclosures and patent applications.
- Strong publication record in leading peer-reviewed journals and presentations at major international conferences.