Title | Compressed Sensing Measurement of Long-Range Correlated Noise |
Publication Type | Journal Article |
Year of Publication | 2021 |
Authors | Seif, A, Hafezi, M, Liu, Y-K |
Date Published | 5/26/2021 |
Abstract | Long-range correlated errors can severely impact the performance of NISQ (noisy intermediate-scale quantum) devices, and fault-tolerant quantum computation. Characterizing these errors is important for improving the performance of these devices, via calibration and error correction, and to ensure correct interpretation of the results. We propose a compressed sensing method for detecting two-qubit correlated dephasing errors, assuming only that the correlations are sparse (i.e., at most s pairs of qubits have correlated errors, where s << n(n-1)/2, and n is the total number of qubits). In particular, our method can detect long-range correlations between any two qubits in the system (i.e., the correlations are not restricted to be geometrically local). |
URL | https://arxiv.org/abs/2105.12589 |