Localized Virtual Purification

Fuente: arXiv
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Autores principales: Hakoshima, Hideaki, Endo, Suguru, Yamamoto, Kaoru, Matsuzaki, Yuichiro, Yoshioka, Nobuyuki
Formato: Preprint
Publicado: 2023
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author Hakoshima, Hideaki
Endo, Suguru
Yamamoto, Kaoru
Matsuzaki, Yuichiro
Yoshioka, Nobuyuki
author_facet Hakoshima, Hideaki
Endo, Suguru
Yamamoto, Kaoru
Matsuzaki, Yuichiro
Yoshioka, Nobuyuki
contents Analog and digital quantum simulators can efficiently simulate quantum many-body systems that appear in natural phenomena. However, experimental limitations of near-term devices still make it challenging to perform the entire process of quantum simulation. The purification-based quantum simulation methods can alleviate the limitations in experiments such as the cooling temperature and noise from the environment, while this method has the drawback that it requires global entangled measurement with a prohibitively large number of measurements that scales exponentially with the system size. In this Letter, we propose that we can overcome these problems by restricting the entangled measurements to the vicinity of the local observables to be measured, when the locality of the system can be exploited. We provide theoretical guarantees that the global purification operation can be replaced with local operations under some conditions, in particular for the task of cooling and error mitigation. We furthermore give a numerical verification that the localized purification is valid even when conditions are not satisfied. Our method bridges the fundamental concept of locality with quantum simulators, and therefore expected to open a path to unexplored quantum many-body phenomena.
format Preprint
id arxiv_https___arxiv_org_abs_2308_13500
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Localized Virtual Purification
Hakoshima, Hideaki
Endo, Suguru
Yamamoto, Kaoru
Matsuzaki, Yuichiro
Yoshioka, Nobuyuki
Quantum Physics
Analog and digital quantum simulators can efficiently simulate quantum many-body systems that appear in natural phenomena. However, experimental limitations of near-term devices still make it challenging to perform the entire process of quantum simulation. The purification-based quantum simulation methods can alleviate the limitations in experiments such as the cooling temperature and noise from the environment, while this method has the drawback that it requires global entangled measurement with a prohibitively large number of measurements that scales exponentially with the system size. In this Letter, we propose that we can overcome these problems by restricting the entangled measurements to the vicinity of the local observables to be measured, when the locality of the system can be exploited. We provide theoretical guarantees that the global purification operation can be replaced with local operations under some conditions, in particular for the task of cooling and error mitigation. We furthermore give a numerical verification that the localized purification is valid even when conditions are not satisfied. Our method bridges the fundamental concept of locality with quantum simulators, and therefore expected to open a path to unexplored quantum many-body phenomena.
title Localized Virtual Purification
topic Quantum Physics
url https://arxiv.org/abs/2308.13500