Toshiba has been at the forefront of quantum communications technologies for over two decades, particularly in quantum cryptography and networking. Toshiba’s commercial quantum key distribution systems offer the highest key rates on the market and play a major role in the worldwide deployment of secure quantum networks.
Photonic integrated circuits (PICs) have revolutionized photonic technologies such as coherent optical communications, sensing and computing. Over the past decade, their application to quantum technologies has been a strong catalyst for the miniaturisation and scalability of quantum systems, enabling compact, high-performance devices that are viable for commercialisation.
We invite talented researchers with expertise in photonic integrated circuits (PICs) and quantum technologies to join our Photonic Integration Team at Toshiba Europe’s Cambridge Research Lab. The successful candidate will lead the development of cutting-edge photonic integrated circuits for next-generation quantum communications and networking systems. The role spans from the conception of the photonic chips to their validation and integration in deployable system prototypes.
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.
Responsibilities
Photonic chip development
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Devise and implement new concepts for photonic chips for quantum communications.
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Conceive and implement new experiments and new protocols for quantum communications.
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Measure, characterise, validate and optimise the performance of photonic chips and demonstrate their suitability for large-scale deployment.
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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
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Contribute to the development of high-performance quantum photonic system prototypes based on photonic integrated circuits.
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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.
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Develop system control, automation, synchronisation, simulation, and data analysis.
Collaboration & Dissemination
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Analyse experimental data and communicate findings through peer-reviewed scientific publications, internal reviews, and major international conferences.
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Collaborate with industrial partners and academic groups across the UK, Europe, and Japan.
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Mentor PhD students and earlycareer staff researchers.
Skills and Experience Essential
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PhD in Physics, Photonics, Electronic Engineering, or a closely related field.
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Proven academic or industrial research experience in one or more of the following areas:
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Photonic integrated circuits, hybrid photonic integration, photonic device design, simulation, modelling, and characterisation.
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Quantum communications, quantum key distribution (QKD), quantum networks, or quantum photonics.
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High-speed coherent optical communication systems.
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Photonic packaging, micro-optics, nanofabrication, or advanced photonic assembly technologies.
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Hands-on experience in the development and operation of advanced photonic experimental setups and proficiency with RF test and measurement techniques.
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Proficiency in Python, MATLAB, LabVIEW, or equivalent programming languages for laboratory automation, system control, simulation, and data analysis.
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Strong analytical and critical thinking skills, with the ability to identify technical challenges and develop creative and innovative solutions to overcome them.
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Demonstrated ability to recognise the potential value of novel physical phenomena, technologies, and concepts, and translate them into practical and commercially relevant solutions.
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Ability to work effectively both independently and collaboratively within a multidisciplinary team.
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Excellent written and verbal communication skills, including scientific publications, technical presentations, technical reporting, and proposal writing.
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Proactive, highly organised, and capable of leading challenging technical projects to successful outcomes.