
Quandela is a global leader in quantum computing, designing, building, and delivering cutting-edge quantum solutions for research and industry. Its offerings include the most energy-efficient quantum computers for data centers, full-stack quantum computing solutions accessible via the cloud, and algorithm access services for academic and industrial customers.
Following a pragmatic, step-by-step roadmap, Quandela has been deploying industrial-grade systems since 2023 while developing future generations of fault-tolerant quantum computers capable of scaling through the integration of thousands of photonic components. Quandela is committed to making quantum computing accessible to all in order to address the most complex industrial and societal challenges.
Learn more at: Quandela | Leading Photonic Quantum Computing Solutions
Our ambition is to build large-scale fault-tolerant quantum computers. Within Architecture, we develop methods to model and simulate our systems, understand their performance and guide future architecture choices.
You will work across our Device Physics and Quantum Information teams, bringing practical expertise in Tensor Network methods to develop a new simulation capability at Quandela.
You will apply and adapt approaches such as MPS, PEPS and related methods to quantum systems, circuits and future architectures.
The scientific questions will be defined together with the teams. Your role will be to determine how to address them: identify relevant literature, select numerical methods, develop simulations and assess their limitations.
As a Quantum Information Scientist working on Tensor Network Simulations, you will:
During your first 3 months: become familiar with Quandela’s architectures and research questions, investigate relevant methods and propose a first simulation approach.
Within 6–12 months: develop and validate your methods on concrete problems, build reusable tools and take increasing ownership of projects across Device Physics and Quantum Information.
Longer term: become a key contributor to classical simulation at Quandela and extend your work toward future architectures, compilation or algorithm-level studies.
We are looking for a researcher with practical Tensor Network experience and the autonomy to develop numerical approaches for open research problems.
Relevant backgrounds include computational or quantum many-body physics, quantum information, mathematics and computer science. Previous experience in photonic quantum computing is not required.
You do not need experience across every application above. Practical Tensor Network expertise, strong numerical reasoning and the ability to develop a method when the path is not predefined are what matter most.
Postdoctoral or equivalent research experience is particularly relevant, while strong recent PhDs with substantial hands-on Tensor Network experience are also encouraged to apply.
Join a research environment where advanced numerical methods can directly influence how future quantum architectures are evaluated and developed.
The scientific discussions are intended to understand how you approach an open research problem, identify relevant methods, assess their limitations and turn them into a practical numerical approach.
If you enjoy turning open scientific questions into numerical methods, this role offers the opportunity to develop Tensor Network simulation capabilities at Quandela and apply them directly to future quantum systems.

Quandela specialises in the production of photon-based quantum computing and cloud solutions, enabling organisations to achieve their quantum transformation.