English

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 nn-qubit quantum channels cannot be simulated deterministically and exactly by any causally ordered quantum circuit that uses MM calls to one channel and one call to the other, if Mmax(2,2n1)M \leq \max(2, 2^n-1). 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