To pioneer new quantum architectures utilizing the photonic quantum platform, a profound grasp of quantum optical principles governing our photonic hardware is paramount. The objective is to leverage this understanding to harness the quantum advantage. Collaborating closely with the hardware experts, together you will formulate comprehensive system specifications that facilitate the manufacturing of corresponding photonic chips. This, in turn, positions to execute quantum algorithms tailored to address specific industrial applications.
Responsibilities
- Innovate and design cutting-edge quantum architectures that harness the full potential of our hardware platform.
- Attain a comprehensive understanding of the underlying quantum phenomena that govern the behaviour of our photonic quantum chip.
- Identify quantum advantage effects with practical application potential.
- Precisely outline the specifications for the architectural design.
- Create quantum error mitigation and correction strategies tailored to our photonic platform.
- Maintain an inquisitive mindset and stay abreast of the latest advancements in technology.
Qualifications
- A Master's or PhD degree in Physics, Mathematics, or a closely related field.
- Demonstrated experience in quantum optics, non-linear optics, and integrated photonics.
- Proficiency in various quantum computing approaches, quantum algorithms, and hardware platforms, encompassing digital and analog methods, quantum sampling, variational circuits, adiabatic computing, annealing, and one-way/measurement-based quantum computation.
- Strong programming skills in Python and prior experience with quantum programming languages.
- An analytical, creative, and collaborative approach to work, well-suited for a dynamic start-up environment.
- Fluent in both written and spoken English.
Following your application Jake Phillips, a specialist recruiter will discuss the opportunity with you in detail. Jake will be more than happy to answer any questions relating to the industry and the potential for your career growth. The conversation can also progress further to discussing other opportunities, which are also available right now or will be imminently becoming available.
This position has been highly popular, and it is likely that it will close shortly. We recommend ing as soon as possible to avoid disappointment.
Please click ‘’ or contact Jake Phillips for any further information.
j.phillips@barringtonjames.com