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Quantum State Preparation Using an Exact CNOT Synthesis Formulation

Information Theory 2024-09-05 v1 math.IT Quantum Physics

Abstract

Minimizing the use of CNOT gates in quantum state preparation is a crucial step in quantum compilation, as they introduce coupling constraints and more noise than single-qubit gates. Reducing the number of CNOT gates can lead to more efficient and accurate quantum computations. However, the lack of compatibility to model superposition and entanglement challenges the scalability and optimality of CNOT optimization algorithms on classical computers. In this paper, we propose an effective state preparation algorithm using an exact CNOT synthesis formulation. Our method represents a milestone as the first design automation algorithm to surpass manual design, reducing the best CNOT numbers to prepare a Dicke state by 2x. For general states with up to 20 qubits, our method reduces the CNOT number by 9% and 32% for dense and sparse states, on average, compared to the latest algorithms.

Keywords

Cite

@article{arxiv.2401.01009,
  title  = {Quantum State Preparation Using an Exact CNOT Synthesis Formulation},
  author = {Hanyu Wang and Bochen Tan and Jason Cong and Giovanni De Micheli},
  journal= {arXiv preprint arXiv:2401.01009},
  year   = {2024}
}

Comments

6 pages, 7 figures

R2 v1 2026-06-28T14:06:31.848Z