Quantum computation over the vibrational modes of a single trapped ion

Fuente: arXiv
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Bibliographic Details
Main Authors: Ricardo, Alexandre C., de Lima, Gubio G., Valério, Amanda G., Farias, Tiago de S., Villas-Boas, Celso J.
Format: Preprint
Published: 2024
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author Ricardo, Alexandre C.
de Lima, Gubio G.
Valério, Amanda G.
Farias, Tiago de S.
Villas-Boas, Celso J.
author_facet Ricardo, Alexandre C.
de Lima, Gubio G.
Valério, Amanda G.
Farias, Tiago de S.
Villas-Boas, Celso J.
contents Continuous-variable quantum computing utilizes continuous parameters of a quantum system to encode information, promising efficient solutions to complex problems. Trapped-ion systems provide a robust platform with long coherence times and precise qubit control, enabling the manipulation of quantum information through its motional and electronic degrees of freedom. In this work, quantum operations that can be generated in trapped-ion systems are employed to investigate applications aimed at state preparation in continuous-variable quantum systems.
format Preprint
id arxiv_https___arxiv_org_abs_2412_15025
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Quantum computation over the vibrational modes of a single trapped ion
Ricardo, Alexandre C.
de Lima, Gubio G.
Valério, Amanda G.
Farias, Tiago de S.
Villas-Boas, Celso J.
Quantum Physics
Continuous-variable quantum computing utilizes continuous parameters of a quantum system to encode information, promising efficient solutions to complex problems. Trapped-ion systems provide a robust platform with long coherence times and precise qubit control, enabling the manipulation of quantum information through its motional and electronic degrees of freedom. In this work, quantum operations that can be generated in trapped-ion systems are employed to investigate applications aimed at state preparation in continuous-variable quantum systems.
title Quantum computation over the vibrational modes of a single trapped ion
topic Quantum Physics
url https://arxiv.org/abs/2412.15025