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Randomized Benchmarking Using Unitary t-Design for Average Fidelity Estimation of Practical Quantum Circuit

Quantum Physics 2017-12-13 v2

Abstract

Randomized benchmarking is a useful scheme for evaluation the average fidelity of a noisy quantum circuit. However, it is insensitive to the unitary error. Here, we propose a method of randomized benchmarking in which a unitary t-design is applied and by which the unitary error estimation can be converted to analysis of pseudo-randomness on a set of unitary operators. We give a bound on the number of randomized benchmarking sequences, when performing a unitary t-design on n-qubit d-dimensional system. By applying local random unitary operators, a decomposition of a unitary t-design, the bound is more practical than the previous bound for multi-qubit circuit. We also give a rigorous bound of a diamond norm between arbitrary and uniform distributions of a set of unitary operators to form an \epsilon-approximate unitary t-design. It can be used to quantitatively analyze the corresponding average fidelity and errors in a large-scale quantum circuit.

Keywords

Cite

@article{arxiv.1711.08098,
  title  = {Randomized Benchmarking Using Unitary t-Design for Average Fidelity Estimation of Practical Quantum Circuit},
  author = {Linxi Zhang and Chuanghua Zhu and Changxing Pei},
  journal= {arXiv preprint arXiv:1711.08098},
  year   = {2017}
}

Comments

15 pages, 3 figures

R2 v1 2026-06-22T22:53:28.674Z