Quantum Information Scientist - Quantum Error Mitigation

Quandela

Paris

Sur place

EUR 90 000 - 135 000

Plein temps

Il y a 7 heures
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Avantages offerts par ce poste

Competitive compensation
Company savings plan
Health coverage via Alan
Transport reimbursement
Swile meal vouchers
Gymlib access

Résumé du poste

Quandela is seeking a researcher to advance Quantum Error Mitigation (QEM) for photonic and spin-photonic quantum architectures. You will work at the interface of quantum information theory, architecture performance, and fault-tolerant quantum computing, developing methods and evaluating their impact on real hardware systems.

You will collaborate with Quantum Information, Device Physics and FTQC researchers to understand and extend mitigation techniques, contributing to performance studies and

Qualifications

  • PhD in Quantum Information, Quantum Computing, Theoretical Physics or a closely related field.
  • Research experience in Quantum Error Mitigation through development, analysis or application of mitigation methods.
  • Good understanding of noisy quantum systems and how errors affect quantum computations.
  • Ability to critically assess scientific literature and adapt existing methods to new systems or architectures.
  • Experience with scientific programming and numerical simulation, typically in Python.
  • Scientific autonomy; collaborative and effective communicator.

Responsabilités

  • Develop and adapt QEM methods for photonic and spin-photonic architectures.
  • Evaluate their performance, feasibility and implementation cost.
  • Study how mitigation and Quantum Error Correction can complement each other across different operating regimes.
  • Use realistic noise models and hardware constraints to assess impact on fidelity and depth.
  • Build prototypes and numerical tools to test and compare approaches.
  • Collaborate with FTQC and Device Physics researchers on trade-offs.
  • Contribute to benchmarking and performance-analysis within the team.
  • Collaborate with Q.Algorithms and Software teams on applications as methods mature.

Connaissances

Research experience in QEM
Python
Scientific programming
Communication

Formation

PhD in Quantum Information/ Quantum Computing

Description du poste

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. Before reaching full fault tolerance, intermediate architectures will continue to operate under significant hardware and noise constraints, making error mitigation an important part of understanding and improving their performance.

About this position

You will join Quandela's Quantum Information team within Architecture, working at the interface between quantum information theory, architecture performance and fault-tolerant quantum computing.

The team develops methods to benchmark, characterise and evaluate the computational performance of Quandela's current and future architectures, helping guide hardware and architecture decisions.

We are now looking to build dedicated expertise in Quantum Error Mitigation (QEM).

You will develop and assess mitigation methods adapted to our photonic and spin-photonic systems, working closely with Quantum Information, Device Physics and FTQC researchers.

Your goal will be to understand how QEM can improve computation fidelity and extend the useful depth of quantum circuits, while assessing its cost, limitations and interaction with error correction on realistic architectures.

What you'll do
  • Develop and adapt QEM methods for photonic and spin-photonic architectures.
  • Evaluate their performance, feasibility and implementation cost.
  • Study how mitigation and Quantum Error Correction can complement each other across different operating regimes.
  • Use realistic noise models and hardware constraints to assess their impact on computational fidelity and achievable circuit depth.
  • Build scientific prototypes and numerical tools to test and compare different approaches.
  • Work closely with FTQC and Device Physics researchers on noise, errors and architecture-level trade-offs.
  • Contribute to benchmarking and broader performance-analysis activities within the team.
  • As methods mature, collaborate with Q.Algorithms and Software teams on application-level studies and implementation.
How you'll grow

During your first 3 months:

Become familiar with Quandela's architectures, noise models and FTQC roadmap, and identify relevant mitigation approaches.

Within 6-12 months:

Develop and test QEM methods adapted to our systems and take increasing ownership of QEM / QEC and performance studies.

Longer term:

Help shape how mitigation is used across future architectures and explore applications of mature methods at algorithm and software level.

What we're looking for

We are looking for a researcher with hands-on experience in Quantum Error Mitigation and an interest in applying quantum-information theory to real quantum-computing systems.

Your background may also include noisy quantum systems, QEC, benchmarking or hardware-aware quantum computing. What matters is that you have already worked directly with mitigation methods and can adapt them to new physical constraints.

Must-have
  • PhD in Quantum Information, Quantum Computing, Theoretical Physics or a closely related field.
  • Research experience in Quantum Error Mitigation, through the development, analysis or application of mitigation methods.
  • Good understanding of noisy quantum systems and how errors affect quantum computations.
  • Ability to critically assess scientific literature and adapt existing methods to new systems or architectures.
  • Experience with scientific programming and numerical simulation, typically in Python.
  • Scientific autonomy
  • Collaborative and personable, with the ability to communicate ideas clearly to people from other fields of expertise.
  • Professional English.
Important, but you can grow here
  • Quantum Error Correction and early fault-tolerant quantum computing.
  • Understanding of QEM / QEC trade-offs, including overhead and computational performance
  • Hardware-specific noise models and architecture constraints.
  • Quantum benchmarking and performance evaluation
  • Experience working with experimental or hardware-oriented quantum-computing teams.
  • Scientific communication through publications, conferences or technical presentations.
Bonus
  • Photonic quantum computing.
  • Spin-photonic or hybrid quantum architectures.
  • Previous work combining QEM and QEC.
  • Architecture-level performance analysis or resource estimation.
  • Direct collaboration with experimental quantum-computing teams.

Previous experience with photonic quantum computing is not required. Practical QEM experience and the ability to transfer your methods to a new physical architecture are more important.

Benefits

Join a growing quantum-computing company where your research can directly contribute to the performance of future quantum architectures.

  • Help establish Quandela's internal capability in Quantum Error Mitigation.
  • Work with real architecture constraints rather than idealised systems alone.
  • Collaborate closely with Quantum Information, Device Physics and FTQC researchers.
  • Grow your scientific ownership as the team and its research scope expand.
Plus
  • Competitive compensation aligned with your experience and level of responsibility.
  • Company savings plan.
  • 100% health coverage through Alan.
  • Transport reimbursement or sustainable mobility bonus.
  • Swile meal vouchers.
  • Access to Gymlib.
Process
  • Talent Acquisition interview, 30-45 min
  • Interview with Quantum Information hiring manager, 30-45 min
  • Presentation of previous research workand discussion with members of the theory team
  • Reference checks
  • Technical discussion based on a scientific paper or research topic
  • Offer

The technical discussion is intended to understand how you approach scientific material, identify relevant constraints and connect your expertise to a concrete quantum-computing problem.

Beyond that

If you have experience in Quantum Error Mitigation and want to apply it to real quantum architectures, we would love to hear from you, even if your previous work was carried out on a different hardware platform.

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