Optimal control transport of neutral atoms in optical tweezers at finite temperature

Fuente: arXiv
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Auteurs principaux: Pagano, Alice, Jaschke, Daniel, Weiss, Werner, Montangero, Simone
Format: Preprint
Publié: 2024
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author Pagano, Alice
Jaschke, Daniel
Weiss, Werner
Montangero, Simone
author_facet Pagano, Alice
Jaschke, Daniel
Weiss, Werner
Montangero, Simone
contents The transport of neutral atoms in Rydberg quantum computers is a crucial step of the initial arrangement of the grid as well as to the dynamic connectivity, recently successfully demonstrated. We study the application of optimal control and the quantum speed limit for the transport of neutral atoms in optical tweezers at finite temperatures and analyze how laser noise affects transport fidelity. Open-loop optimal control significantly enhances transport fidelity, achieving an improvement up to $89\%$ for the lowest analyzed temperature of $1\,μ$K for a distance of three micrometers. Furthermore, we simulate how the transport fidelity behaves in release-and-capture measurements, which are realizable in the experiment to estimate transport efficiency and implement closed-loop optimal control.
format Preprint
id arxiv_https___arxiv_org_abs_2402_17831
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Optimal control transport of neutral atoms in optical tweezers at finite temperature
Pagano, Alice
Jaschke, Daniel
Weiss, Werner
Montangero, Simone
Quantum Physics
The transport of neutral atoms in Rydberg quantum computers is a crucial step of the initial arrangement of the grid as well as to the dynamic connectivity, recently successfully demonstrated. We study the application of optimal control and the quantum speed limit for the transport of neutral atoms in optical tweezers at finite temperatures and analyze how laser noise affects transport fidelity. Open-loop optimal control significantly enhances transport fidelity, achieving an improvement up to $89\%$ for the lowest analyzed temperature of $1\,μ$K for a distance of three micrometers. Furthermore, we simulate how the transport fidelity behaves in release-and-capture measurements, which are realizable in the experiment to estimate transport efficiency and implement closed-loop optimal control.
title Optimal control transport of neutral atoms in optical tweezers at finite temperature
topic Quantum Physics
url https://arxiv.org/abs/2402.17831