
Hover or tap a row for full statistics (EUR / month on this chart).
Salary analysis
Compared with the selected benchmark ("All roles in Remote - Global"), this listing's salary midpoint is about 94% lower. The offer sits below the benchmark range (€2,290–€14,470). The listed pay band (€408–€671) is tighter than the benchmark, which suggests lower salary variability. This benchmark is based on 403 comparable listings.
| Market | Lower bound (25th percentile) | Median | Upper bound (75th percentile) |
|---|---|---|---|
| All roles in Remote - Global | €2,290/per month | €6,474/per month | €14,470/per month |
| Pay in our data — not quoted in ad (Mid-Level) | €408/per month | €539/per month | €671/per month |
IQM is a global leader in designing, building, and selling superconducting quantum computers. IQM provides both on-premises full-stack quantum computers and a cloud platform to access its computers anywhere in the world. IQM customers include the leading high-performance computing centres, research labs, universities and enterprises which have full access to IQM's software and hardware. IQM has over 300 employees with offices in Finland, Germany, France, Spain, Poland, South Korea Japan, Singapore, Taiwan and the US. We are looking for a Quantum Error Correction Engineer. In this role, you turn quantum error correction theory into practical building blocks for fault-tolerant quantum computing. You will help design, analyze, and implement error-correcting codes and decoding algorithms that pave the way for scalable fault-tolerant quantum computing architectures. Your work connects theory with hardware reality and plays a central role in shaping how our quantum processors scale reliably. The position is based in Munich, Germany. Develop and analyze quantum error-correcting codes with realistic connectivity and hardware constraints. Design and evaluate fault-tolerant operations, including multi-qubit logical gate strategies such as lattice surgery. Contribute to fault-tolerant quantum algorithms and algorithm-specific error correction approaches. Design, benchmark, and improve decoding algorithms, including graph-based decoders (belief propagation, union-find, minimum-weight perfect matching) and machine-learning-based decoding approaches. Implement and optimize decoding algorithms in Python, C/C++, or Rust, with potential deployment on FPGA platforms. Perform resource estimation and scalability analysis for error-corrected architectures. Collaborate closely with hardware, control, and software teams to ensure alignment between error correction strategies and real QPU capabilities. Publish and present high-impact research results in leading scientific journals and conferences. Maintain high internal and external code quality standards, ensuring scalability and long-term maintainability.
Job Details
Responsibilities
- Develop and analyze quantum error-correcting codes with realistic connectivity and hardware constraints
- Design and evaluate fault-tolerant operations, including multi-qubit logical gate strategies such as lattice surgery
- Contribute to fault-tolerant quantum algorithms and algorithm-specific error correction approaches
- Design, benchmark, and improve decoding algorithms, including: graph-based decoders (belief propagation, union-find, minimum-weight perfect matching) and machine-learning-based decoding approaches
- Implement and optimize decoding algorithms in Python, C/C++, or Rust, with potential deployment on FPGA platforms
- Perform resource estimation and scalability analysis for error-corrected architectures
- Collaborate closely with hardware, control, and software teams to ensure alignment between error correction strategies and real QPU capabilities
- Publish and present high-impact research results in leading scientific journals and conferences
- Maintain high internal and external code quality standards, ensuring scalability and long-term maintainability
Requirements
- Ph.D. in theoretical physics, computer science, applied mathematics, or a similar field
- Deep knowledge of quantum error-correcting codes, fault-tolerant quantum algorithms, or decoding algorithms
- At least 2 years of professional experience developing scientific software in Python, C/C++, or Rust
- Strong publication record, including at least two scientific papers in high-impact journals
- Ability to clearly communicate complex technical concepts across interdisciplinary teams
- Collaborative mindset and comfort working in a team-oriented research and engineering environment
- At least 3 years of experience in designing quantum error-correcting codes, multi-qubit logical gate implementations, fault-tolerant quantum algorithms, decoding algorithms, machine-learning-based decoding methods, FPGA-based implementation of decoding algorithms

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