arXiv · 1710.03636
Learning time-dependent noise to reduce logical errors: Real time error rate estimation in quantum error correction
Abstract
Quantum error correction is important to quantum information processing, which allows us to reliably process information encoded in quantum error correction codes. Efficient quantum error correction benefits from the knowledge of error rates. We propose a protocol for monitoring error rates in real time without interrupting the quantum error correction. Any adaptation of the quantum error correction code or its implementation circuit is not required. The protocol can be directly applied to the most advanced quantum error correction techniques, e.g. surface code. A Gaussian processes algorithm is used to estimate and predict error rates based on error correction data in the past. We find that using these estimated error rates, the probability of error correction failures can be significantly reduced by a factor increasing with the code distance.
Explore related subjects
Keep this discovery
Ming-Xia Huo, Ying Li. 2018-06-10. Learning time-dependent noise to reduce logical errors: Real time error rate estimation in quantum error correction. https://doi.org/10.1088/1367-2630%2Faa916e
Cite the original work for its findings. Save a collection to share your selection of sources.