English

Optimal Circuit Size for Fixed-Hamming-Weight Quantum States Preparation

Quantum Physics 2025-08-27 v2

Abstract

We study the problem of efficiently preparing fixed-Hamming-weight (HW-kk) quantum states, which are superpositions of nn-qubit computational basis states with exactly kk ones. We present a quantum circuit construction that prepares any nn-qubit HW-kk state with a circuit size of O((nk))O(\binom{n}{k}) using at most max{0,n3}\max\{0, n-3\} ancillary qubits. This is the first construction that achieves the theoretical lower bound on circuit size while using only a small number of ancillary qubits. We believe that the techniques presented in this work can be extended to other quantum state preparation algorithms based on decision diagrams, potentially reducing the reliance on ancillary qubits or lowering the overall circuit size.

Keywords

Cite

@article{arxiv.2508.17197,
  title  = {Optimal Circuit Size for Fixed-Hamming-Weight Quantum States Preparation},
  author = {Jingquan Luo and Lvzhou Li},
  journal= {arXiv preprint arXiv:2508.17197},
  year   = {2025}
}
R2 v1 2026-07-01T05:03:11.957Z