Exponential separation in quantum query complexity of the quantum switch with respect to simulations with standard quantum circuits
Quantum Physics
2024-10-02 v2
Abstract
Quantum theory is consistent with a computational model permitting black-box operations to be applied in an indefinite causal order, going beyond the standard circuit model of computation. The quantum switch -- the simplest such example -- has been shown to provide numerous information-processing advantages. Here, we prove that the action of the quantum switch on two -qubit quantum channels cannot be simulated deterministically and exactly by any causally ordered quantum circuit that uses calls to one channel and one call to the other, if . This demonstrates an exponential separation in quantum query complexity of indefinite causal order compared to standard quantum circuits.
Keywords
Cite
@article{arxiv.2409.18420,
title = {Exponential separation in quantum query complexity of the quantum switch with respect to simulations with standard quantum circuits},
author = {Hlér Kristjánsson and Tatsuki Odake and Satoshi Yoshida and Philip Taranto and Jessica Bavaresco and Marco Túlio Quintino and Mio Murao},
journal= {arXiv preprint arXiv:2409.18420},
year = {2024}
}
Comments
23 pages, 3 figures