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Quandela in Massy is seeking an Integrated Photonics designer to build robust, manufacturable PIC components and drive alignment from simulation to tape-out. You will design waveguides, interferometers and reconfigurable elements, translating system requirements into scalable layouts while collaborating with characterization teams.
The role emphasizes close interaction with fabrication constraints, design-for-manufacturing, and ongoing architectural improvements for future scalable quantum
Quandelais a Europeandeeptechscale-up building modular, scalable and energy-efficientphotonicquantum computers.
With more than 140 people, we develop our own hardware technologies — from single-photon sources to photonic integrated circuits (PICs) — and make them accessible via cloud andon-premisesystems.
At the core of our processors are Photonic Integrated Circuits (PICs): compact optical chips that route and manipulate single photons to perform quantum operations at scale.
You will join the Integrated Photonics team in Massy, composed of senior engineers, PhDs, and research interns working acrossdesign, characterization, and packaging of our PICs.
The team owns the full design cycle of our photonic circuits — from simulation and layout to foundry collaboration and performance feedback. Fabrication is outsourced, but simulation depth, architectural choices, and design-for-manufacturing decisions are fully internal.
You will design andoptimizekey building blocks of our PIC platform, translating system requirements into robust and manufacturable layouts that support the evolution of our processors.Working closely with characterization, you will iteratively refine your designs based on fabrication variability and experimental feedback.
The coming year is strongly design-driven, with a focus on improving robustness against fabrication variability, increasing integration density, and preparing architectural evolutions for future scalable quantum processors.
What you design today directly shapes the scalability, stability, and performance of tomorrow’s photonic quantum processors.
Your work directlyimpactshow efficiently our circuits scale, how resilient theyremainunder fabrication variability, and how quickly research concepts become reliable hardware.
AsQuandelagrows, this role helps shape not only components, but also the design methodologies and standards that will support larger-scale andfault-tolerantquantumarchitectures.
Design and simulate photonic components
Translate simulations into manufacturable layouts
Collaborate with characterization
0/3 months → Understand our simulation environment and reproduce existingcomponentdesigns.
3–6 months → Lead a full simulation-to-layout cycle on a definedcomponent.
6–12 months → Contribute to design improvements and take part in next-generationcomponentdevelopment,supporting the transition toward higher-speed reconfiguration regimes and tighter performance constraints.
Longer term →Take ownership of architectural blocks or contribute to defining structured design methodologies as our PIC platform evolves toward larger and fault-tolerant systems.
Must-have:
Important (can grow here):
Bonus:
We welcome strong PhD profiles as well as engineers with a few years of experience. What matters most is simulation autonomy, strong physical intuition, and the ability to turn models into robust devices while thinking at system scale.
Join one of the fastest-growing quantum hardware companies in Europe and contribute directly to the evolution of scalable photonic quantum processors.