A hybrid quantum solver for the Lorenz system

Fuente: arXiv
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Main Authors: Hafshejani, Sajad Fathi, Gaur, Daya, Dasgupta, Arundhati, Benkoczi, Robert, Gosala, Narasimha, Iorio, Alfredo
Format: Preprint
Published: 2024
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author Hafshejani, Sajad Fathi
Gaur, Daya
Dasgupta, Arundhati
Benkoczi, Robert
Gosala, Narasimha
Iorio, Alfredo
author_facet Hafshejani, Sajad Fathi
Gaur, Daya
Dasgupta, Arundhati
Benkoczi, Robert
Gosala, Narasimha
Iorio, Alfredo
contents We develop a hybrid classical-quantum method for solving the Lorenz system. We use the forward Euler method to discretize the system in time, transforming it into a system of equations. This set of equations is solved using the Variational Quantum Linear Solver (VQLS) algorithm. We present numerical results comparing the hybrid method with the classical approach for solving the Lorenz system. The simulation results demonstrate that the VQLS method can effectively compute solutions comparable to classical methods. The method is easily extended to solving similar nonlinear differential equations.
format Preprint
id arxiv_https___arxiv_org_abs_2410_15417
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle A hybrid quantum solver for the Lorenz system
Hafshejani, Sajad Fathi
Gaur, Daya
Dasgupta, Arundhati
Benkoczi, Robert
Gosala, Narasimha
Iorio, Alfredo
Quantum Physics
Numerical Analysis
Mathematical Physics
We develop a hybrid classical-quantum method for solving the Lorenz system. We use the forward Euler method to discretize the system in time, transforming it into a system of equations. This set of equations is solved using the Variational Quantum Linear Solver (VQLS) algorithm. We present numerical results comparing the hybrid method with the classical approach for solving the Lorenz system. The simulation results demonstrate that the VQLS method can effectively compute solutions comparable to classical methods. The method is easily extended to solving similar nonlinear differential equations.
title A hybrid quantum solver for the Lorenz system
topic Quantum Physics
Numerical Analysis
Mathematical Physics
url https://arxiv.org/abs/2410.15417