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Open Quantum Systems Decoherence

Quantum Implicit-Explicit Schemes for Multiscale Ordinary and Partial Differential Equations via Schrödingerization

arXiv
Authors: Qitong Hu, Xiaoyang He, Shi Jin, Xiao-Dong Zhang

Year

2026

Paper ID

68122

Status

Preprint

Abstract Read

~2 min

Abstract Words

127

Citations

0

Abstract

In this paper, we present a quantum implicit-explicit (IMEX) scheme for multiscale ordinary and partial differential equations whose discretization parameters are independent of the scaling parameter varepsilon. A key ingredient of our approach is a continuous-time formulation of classical IMEX schemes, which decouples the evolution time of the quantum algorithm from the physical time of the differential equation and is therefore particularly useful in multiscale settings. Building on this idea, we employ the Schrödingerization framework [Phys. Rev. Lett. 133 (2024), 230602] to implement IMEX schemes on quantum computers. Compared to previous HHL type quantum AP scheme [J. Comput. Phys. 471 (2022), 111641], this new method requires narrower - an extra logarithmic factor - auxiliary register numerical examples on linear heat and multiscale telegraph equations demonstrate the independence in varepsilon of the method.

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  • In this paper, we present a quantum implicit-explicit (IMEX) scheme for multiscale ordinary and partial differential equations whose discretization parameters are independent...

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