Approaches to Simultaneously Solving Variational Quantum Eigensolver Problems

Fuente: arXiv
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Auteurs principaux: Hutchings, Adam, Yarnot, Eric, Li, Xinpeng, Guan, Qiang, Xie, Ning, Xu, Shuai, Chaudhary, Vipin
Format: Preprint
Publié: 2024
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author Hutchings, Adam
Yarnot, Eric
Li, Xinpeng
Guan, Qiang
Xie, Ning
Xu, Shuai
Chaudhary, Vipin
author_facet Hutchings, Adam
Yarnot, Eric
Li, Xinpeng
Guan, Qiang
Xie, Ning
Xu, Shuai
Chaudhary, Vipin
contents The variational quantum eigensolver (VQE), a type of variational quantum algorithm, is a hybrid quantum-classical algorithm to find the lowest-energy eigenstate of a particular Hamiltonian. We investigate ways to optimize the VQE solving process on multiple instances of the same problem, by observing the process on one instance of the problem to inform initialization for other processes. We aim to take advantage of the VQE solution process to obtain useful information while disregarding information which we can predict to not be very useful. In particular, we find that the solution process produces lots of data with very little new information. Therefore, we can safely disregard much of this repetitive information with little effect on the outcome of the solution process.
format Preprint
id arxiv_https___arxiv_org_abs_2410_21413
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Approaches to Simultaneously Solving Variational Quantum Eigensolver Problems
Hutchings, Adam
Yarnot, Eric
Li, Xinpeng
Guan, Qiang
Xie, Ning
Xu, Shuai
Chaudhary, Vipin
Quantum Physics
Emerging Technologies
The variational quantum eigensolver (VQE), a type of variational quantum algorithm, is a hybrid quantum-classical algorithm to find the lowest-energy eigenstate of a particular Hamiltonian. We investigate ways to optimize the VQE solving process on multiple instances of the same problem, by observing the process on one instance of the problem to inform initialization for other processes. We aim to take advantage of the VQE solution process to obtain useful information while disregarding information which we can predict to not be very useful. In particular, we find that the solution process produces lots of data with very little new information. Therefore, we can safely disregard much of this repetitive information with little effect on the outcome of the solution process.
title Approaches to Simultaneously Solving Variational Quantum Eigensolver Problems
topic Quantum Physics
Emerging Technologies
url https://arxiv.org/abs/2410.21413