Job Description
Define the system architecture for scalable quantum control and readout Drive architectural direction for heterogeneous compute platforms supporting control, measurement, and feedback workloads Establish system partitioning and co-design strategies across hardware, firmware, microarchitecture, software, and quantum systems Lead the collaboration with third-party quantum hardware partners in Europe Lead system-level trade-offs and guide platform evolution toward scalable, production-ready quantum systems Doctorate in Physics, Engineering, or related field AND experience in industry or in a research and development environment Master's Degree in Physics, Engineering, or related field AND experience in industry or in a research and development environment OR Bachelor's Degree in Physics, Engineering, or related field AND experience in industry or in a research and development environment OR equivalent experience. Experience driving architectural trade-offs across performance, scalability, power, and reliability Ability to work in an “AI-first” environment using modern AI tools to accelerate discovery through both hardware and software development. Proven experience designing complex compute or signal-processing architectures (e.g., SoCs, distributed systems, accelerators, networking fabrics) Proficient understanding of system architecture fundamentals (compute, memory, interconnects, data movement, HW/SW partitioning) Demonstrated leadership in cross-functional hardware/software co-design initiatives Familiarity with quantum control, readout, or error correction concepts Experience with FPGA, ASIC, or custom accelerator technologies Exposure to cryogenic or constrained computing environments Experience defining scalable architectures for emerging compute platforms