Key takeaways:
The continuous path from error mitigation to fault-tolerant quantum computing
Quantum error mitigation and quantum error correction are often framed as tools for different eras of quantum computing: mitigation for near-term devices and correction for scalable fault tolerance. In practice, however, we see a…
ibm.com
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Sep 15, 2026 at 7:51 PM UTC · 10 min de leitura

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- Quantum error mitigation and error correction are both extending the path to useful quantum computing before full fault-tolerant quantum computing, with emerging error-correction techniques already demonstrating ~10x lower effective error rates than the underlying physical hardware.
- Hybrid error-correcting techniques can improve reliability while reducing the resources required for useful computations. Current results show 63x reduction in the inferred sampling overhead compared to error mitigation techniques alone.
- Conditional methods enable partially fault-tolerant architectures to reach universal quantum computation while avoiding some of the significant resource overheads of traditional fault-tolerant approaches.
- Hierarchical codes provide a route to substantially reduced error rates without the need to build greater complexity into the chip, relaxing the physics and engineering requirements for reaching trillions of operations.
- IBM Quantum Platform and Qiskit provide quantum information scientists access to every layer of the stack, from pulse-level capabilities through compilation and execution, enabling new approaches to quantum error correction and device characterization.
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