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Noisy intermediate-scale quantum simulation of the one-dimensional wave equation

Quantum Physics 2024-12-17 v3 Mathematical Physics math.MP Applied Physics Classical Physics Computational Physics

Abstract

We design and implement quantum circuits for the simulation of the one-dimensional wave equation on the Quantinuum H1-1 quantum computer. The circuit depth of our approach scales as O(n2)O(n^{2}) for nn qubits representing the solution on 2n2^{n} grid points, and leads to infidelities of O(24nt2)O(2^{-4n} t^{2}) for simulation time tt assuming smooth initial conditions. By varying the qubit count we study the interplay between the algorithmic and physical gate errors to identify the optimal working point of minimum total error. Our approach to simulating the wave equation can be used with appropriate state preparation algorithms across different quantum processors and serve as an application-oriented benchmark.

Keywords

Cite

@article{arxiv.2402.19247,
  title  = {Noisy intermediate-scale quantum simulation of the one-dimensional wave equation},
  author = {Lewis Wright and Conor Mc Keever and Jeremy T. First and Rory Johnston and Jeremy Tillay and Skylar Chaney and Matthias Rosenkranz and Michael Lubasch},
  journal= {arXiv preprint arXiv:2402.19247},
  year   = {2024}
}

Comments

11 pages, 8 figures, 1 table

R2 v1 2026-06-28T15:04:44.609Z