Filter-enhanced adiabatic quantum computing on a digital quantum processor

Fuente: arXiv
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Autori principali: Karacan, Erenay, Keever, Conor Mc, Foss-Feig, Michael, Hayes, David, Lubasch, Michael
Natura: Preprint
Pubblicazione: 2025
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author Karacan, Erenay
Keever, Conor Mc
Foss-Feig, Michael
Hayes, David
Lubasch, Michael
author_facet Karacan, Erenay
Keever, Conor Mc
Foss-Feig, Michael
Hayes, David
Lubasch, Michael
contents Eigenstate filters underpin near-optimal quantum algorithms for ground state preparation. Their realization on current quantum computers, however, poses a challenge as the filters are typically represented by deep quantum circuits. Additionally, since the filters are created probabilistically, their circuits need to be rerun many times when the associated success probability is small. Here we describe a strategy to implement a ground-state filter on quantum hardware in the presence of noise by prepending the filter with digitized adiabatic quantum computing. The adiabatically prepared input state increases the success probability of the filter and also reduces its circuit depth requirements. At the same time, the filter enhances the accuracy of the adiabatically prepared ground state. We compare the approach to the purely adiabatic protocol through numerical simulations and experiments on the Quantinuum H1-1 quantum computer. We demonstrate a significant improvement in ground-state accuracies for paradigmatic quantum spin models.
format Preprint
id arxiv_https___arxiv_org_abs_2503_20674
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Filter-enhanced adiabatic quantum computing on a digital quantum processor
Karacan, Erenay
Keever, Conor Mc
Foss-Feig, Michael
Hayes, David
Lubasch, Michael
Quantum Physics
Eigenstate filters underpin near-optimal quantum algorithms for ground state preparation. Their realization on current quantum computers, however, poses a challenge as the filters are typically represented by deep quantum circuits. Additionally, since the filters are created probabilistically, their circuits need to be rerun many times when the associated success probability is small. Here we describe a strategy to implement a ground-state filter on quantum hardware in the presence of noise by prepending the filter with digitized adiabatic quantum computing. The adiabatically prepared input state increases the success probability of the filter and also reduces its circuit depth requirements. At the same time, the filter enhances the accuracy of the adiabatically prepared ground state. We compare the approach to the purely adiabatic protocol through numerical simulations and experiments on the Quantinuum H1-1 quantum computer. We demonstrate a significant improvement in ground-state accuracies for paradigmatic quantum spin models.
title Filter-enhanced adiabatic quantum computing on a digital quantum processor
topic Quantum Physics
url https://arxiv.org/abs/2503.20674