PIC Design Engineer
- Foundry
- Beam
- Python
About Quandela:Â
Quandela is a European deeptech scale-up buildingmodular, scalable and energy-efficient photonic quantum computers.Â
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 and on-premise systems.Â
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.Â
About this position:
You will join theIntegrated Photonics team in Massy, composed of senior engineers, PhDs, and research interns working across design, characterization, and packaging of our PICs.Â
The team owns thefull design cycle of our photonic circuits — from simulation and layout to foundry collaboration and performance feedback. Fabrication is outsourced, butsimulation depth, architectural choices, and design-for-manufacturing decisions are fully internal.Â
You will design and optimize key building blocks of our PIC platform, translating system requirements intorobust and manufacturable layouts that support the evolution of our processors. Working closely with characterization, you williteratively refine your designs based on fabrication variability and experimental feedback.Â
The coming year is strongly design-driven, with a focus on improvingrobustness against fabrication variability, increasing integration density, and preparing architectural evolutions for futurescalable quantum processors.
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Why this role matters:
What you design today directly shapes thescalability, stability, and performance of tomorrow’s photonic quantum processors.
Your work directly impacts how efficiently our circuits scale, how resilient they remain under fabrication variability, and how quickly research concepts become reliable hardware.Â
As Quandela grows, this role helps shape not only components, but also thedesign methodologies and standards that will support larger-scale and fault-tolerant quantum architectures.Â
What will you do?Â
Design and simulate photonic componentsÂ
• Perform electromagnetic and thermal simulations (Lumerical required; Tidy3D or similar is a plus)Â
• Analyze trade-offs between loss, footprint, fabrication tolerance, and performanceÂ
• Design and optimize waveguides, interferometers, beam splitters, phase shifters, and reconfigurable elementsÂ
• Contribute to next-generation components, including high-speed and new-material integrationsÂ
Translate simulations into manufacturable layoutsÂ
• Generate mask layouts usingGDS-based toolsÂ
• Prepare designs for tape-out with external foundriesÂ
• Ensure designs remain compatible with real fabrication constraintsÂ
Collaborate with characterizationÂ
• Analyze measured data against simulations and identify performance gaps
• Refine models and layouts based on fabrication and experimental feedbackÂ
• Contribute to continuous performance improvementsÂ
How you’ll grow?
0/3 months → Understand our simulation environment and reproduce existing component designs.Â
3–6 months → Lead a full simulation-to-layout cycle on a defined component.Â
6–12 months → Contribute to design improvements and take part in next-generation component development, supporting the transition toward higher-speed reconfiguration regimes and tighter performance constraints.Â
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.Â
What we’re looking for:Â
Must-have:Â
• Master’s or PhD in Photonics, Physics, Electronic Engineering or related fieldÂ
• Hands-on experience in PIC simulation (Lumerical strongly preferred)Â
• Experience translating simulations into manufacturable layouts using GDS-based tools (GDSFactory, IPKISS, KLayout, or similar)
• Understanding of integrated photonics fundamentals (waveguide physics, interferometers, beam splitters and phase control mechanisms)Â
• Ability to reason atcircuit level, beyond individual componentsÂ
• Professional EnglishÂ
Important (can grow here):Â
• Experience closing the loop between simulation and experimental resultsÂ
• Familiarity with fabrication constraints and design-for-manufacturing logicÂ
• Python for automation, scripting or data analysisÂ
• Interest in scalable or quantum hardware architectures (quantum knowledge is a plus, not a prerequisite)Â
Bonus:Â
• Experience in industrial PIC platforms or foundry-driven environmentÂ
• Exposure to high-speed photonic components or cryogenic constraintsÂ
• Familiarity with inverse design and particle swarm optimizationÂ
We welcome strong PhD profiles as well as engineers with a few years of experience.Â
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.
• Work at the forefront of integrated photonics and quantum computing, shaping the building blocks of future fault-tolerant architectures
• Be part of a passionate, multidisciplinary team of designers, physicists and engineers
• Contribute to real hardware that bridges research concepts and production-ready quantum systems
• Competitive compensation aligned with your experience and technical background
• Company savings plan
• 100% health coverage (Alan)
• Transport reimbursement or mobility bonus
• Swile meal vouchers
• Access to Gymlib
PIC Design Engineer · Quandela