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Quantum circuits for partial differential equations in Fourier space

Quantum circuits for partial differential equations in Fourier space

来源:Arxiv_logoArxiv
英文摘要

For the solution of partial differential equations (PDEs), we show that the quantum Fourier transform (QFT) can enable the design of quantum circuits that are particularly simple, both conceptually and with regard to hardware requirements. This is shown by explicit circuit constructions for the incompressible advection, heat, isotropic acoustic wave, and Poisson's equations as canonical examples. We utilize quantum singular value transformation to develop circuits that are expected to be of optimal computational complexity. Additionally, we consider approximations suited for smooth initial conditions and describe circuits that make lower demands on hardware. The simple QFT-based circuits are efficient with respect to dimensionality and pave the way for current quantum computers to solve high-dimensional PDEs.

Michael Lubasch、Conor Mc Keever、Yuta Kikuchi、Lewis Wright

物理学

Michael Lubasch,Conor Mc Keever,Yuta Kikuchi,Lewis Wright.Quantum circuits for partial differential equations in Fourier space[EB/OL].(2025-05-22)[2025-06-21].https://arxiv.org/abs/2505.16895.点此复制

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