| name | qec-code-builder |
| description | Quantum error correction code implementation skill for fault-tolerant quantum computing |
| allowed-tools | ["Bash","Read","Write","Edit","Glob","Grep"] |
| metadata | {"specialization":"quantum-computing","domain":"science","category":"error-management","phase":6} |
| graph | {"domains":["domain:quantum-computing"],"specializations":["specialization:quantum-computing"],"skillAreas":["skill-area:mathematical-reasoning","skill-area:graph-algorithms","skill-area:physics-simulation"],"workflows":["workflow:experiment-design"],"roles":["role:research-scientist","role:computational-scientist"]} |
QEC Code Builder
Purpose
Provides expert guidance on quantum error correction code implementation, enabling fault-tolerant quantum computing through encoding, syndrome extraction, and logical operations.
Capabilities
- Surface code implementation
- Steane code [[7,1,3]] construction
- Color code implementation
- Repetition code for testing
- Syndrome extraction circuits
- Logical gate implementations
- Code distance optimization
- Threshold analysis
Usage Guidelines
- Code Selection: Choose QEC code based on error model and resource constraints
- Encoding Design: Implement logical qubit encoding circuits
- Syndrome Extraction: Design efficient syndrome measurement schedules
- Decoder Integration: Connect to appropriate decoding algorithms
- Logical Operations: Implement fault-tolerant logical gates
Tools/Libraries
- Stim
- PyMatching
- QLDPC
- Qiskit
- Cirq