paper

Comparing randomized benchmarking figure with average infidelity of quantum gate-set

arXiv:1805.10622 · doi:10.1142/S021974991950031X

Abstract

Randomized benchmarking (RB) is a popular procedure used to gauge the performance of a set of gates useful for quantum information processing (QIP). Recently, Proctor et al. [Phys. Rev. Lett. 119, 130502 (2017)] demonstrated a practically relevant example where the RB measurements give a number very different from the actual average gate-set infidelity , despite past theoretical assurances that the two should be equal. Here, we derive formulas for , and for from the RB protocol, in a manner permitting easy comparison of the two. We show in general that, indeed, , i.e., RB does not measure average infidelity, and, in fact, neither one bounds the other. We give several examples, all plausible in real experiments, to illustrate the differences in and . Many recent papers on experimental implementations of QIP have claimed the ability to perform high-fidelity gates because they demonstrated small values using RB. Our analysis shows that such a statement from RB alone has to be interpreted with caution.

9 pages, 1 figure

Comparing randomized benchmarking figure with average infidelity of quantum gate-set · wovepaper