Query and Depth Upper Bounds for Quantum Unitaries via Grover Search
Quantum Physics
2026-05-05 v5 Computational Complexity
Abstract
We prove that any -qubit unitary can be implemented (i) approximately in time with query access to an appropriate classical oracle, and also (ii) exactly by a circuit of depth with one- and two-qubit gates and ancillae. The proofs involve similar reductions to Grover search. The proof of (ii) also involves a linear-depth construction of arbitrary quantum states using one- and two-qubit gates (in fact, this can be improved to constant depth with the addition of fanout and generalized Toffoli gates) which may be of independent interest. We also prove a matching lower bound for (i) and (ii) for a certain class of implementations.
Cite
@article{arxiv.2111.07992,
title = {Query and Depth Upper Bounds for Quantum Unitaries via Grover Search},
author = {Gregory Rosenthal},
journal= {arXiv preprint arXiv:2111.07992},
year = {2026}
}
Comments
14 pages, 1 figure