Engineering quantum states with neutral atoms

Fuente: arXiv
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Hauptverfasser: Balewski, Jan, Kornjača, Milan, Klymko, Katherine, Darbha, Siva, Hirsbrunner, Mark R., Lopes, Pedro L. S., Liu, Fangli, Camps, Daan
Format: Preprint
Veröffentlicht: 2024
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author Balewski, Jan
Kornjača, Milan
Klymko, Katherine
Darbha, Siva
Hirsbrunner, Mark R.
Lopes, Pedro L. S.
Liu, Fangli
Camps, Daan
author_facet Balewski, Jan
Kornjača, Milan
Klymko, Katherine
Darbha, Siva
Hirsbrunner, Mark R.
Lopes, Pedro L. S.
Liu, Fangli
Camps, Daan
contents Aquila, an analog quantum simulation platform developed by QuEra Computing, supports control of the position and coherent evolution of up to 256 neutral atoms. This study details novel experimental protocols designed for analog quantum simulators that generate Bell state entanglement far away from the blockade regime, construct a $Z_2$ state with a defect induced by an ancilla, and optimize the driving fields schedule to prepare excited states with enhanced fidelity. We additionally evaluate the effectiveness of readout error mitigation techniques in improving the fidelity of measurement results. All experiments were executed on Aquila from QuEra and facilitated by the AWS Braket interface. Our experimental results closely align with theoretical predictions and numerical simulations. The insights gained from this study showcase Aquila's capabilities in handling complex quantum simulations and computations, and also pave the way for new avenues of research in quantum information processing and physics that employ programmable analog hardware platforms.
format Preprint
id arxiv_https___arxiv_org_abs_2404_04411
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Engineering quantum states with neutral atoms
Balewski, Jan
Kornjača, Milan
Klymko, Katherine
Darbha, Siva
Hirsbrunner, Mark R.
Lopes, Pedro L. S.
Liu, Fangli
Camps, Daan
Quantum Physics
Aquila, an analog quantum simulation platform developed by QuEra Computing, supports control of the position and coherent evolution of up to 256 neutral atoms. This study details novel experimental protocols designed for analog quantum simulators that generate Bell state entanglement far away from the blockade regime, construct a $Z_2$ state with a defect induced by an ancilla, and optimize the driving fields schedule to prepare excited states with enhanced fidelity. We additionally evaluate the effectiveness of readout error mitigation techniques in improving the fidelity of measurement results. All experiments were executed on Aquila from QuEra and facilitated by the AWS Braket interface. Our experimental results closely align with theoretical predictions and numerical simulations. The insights gained from this study showcase Aquila's capabilities in handling complex quantum simulations and computations, and also pave the way for new avenues of research in quantum information processing and physics that employ programmable analog hardware platforms.
title Engineering quantum states with neutral atoms
topic Quantum Physics
url https://arxiv.org/abs/2404.04411