English

Fast Simulation of High-Depth QAOA Circuits

Quantum Physics 2023-11-14 v2 Distributed, Parallel, and Cluster Computing Performance

Abstract

Until high-fidelity quantum computers with a large number of qubits become widely available, classical simulation remains a vital tool for algorithm design, tuning, and validation. We present a simulator for the Quantum Approximate Optimization Algorithm (QAOA). Our simulator is designed with the goal of reducing the computational cost of QAOA parameter optimization and supports both CPU and GPU execution. Our central observation is that the computational cost of both simulating the QAOA state and computing the QAOA objective to be optimized can be reduced by precomputing the diagonal Hamiltonian encoding the problem. We reduce the time for a typical QAOA parameter optimization by eleven times for n=26n = 26 qubits compared to a state-of-the-art GPU quantum circuit simulator based on cuQuantum. Our simulator is available on GitHub: https://github.com/jpmorganchase/QOKit

Keywords

Cite

@article{arxiv.2309.04841,
  title  = {Fast Simulation of High-Depth QAOA Circuits},
  author = {Danylo Lykov and Ruslan Shaydulin and Yue Sun and Yuri Alexeev and Marco Pistoia},
  journal= {arXiv preprint arXiv:2309.04841},
  year   = {2023}
}

Comments

Additional references added in v2

R2 v1 2026-06-28T12:17:06.135Z