Penning micro-trap for quantum computing

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Jain, S.; Sägesser, T.; Hrmo, P.; Torkzaban, C.; Stadler, M. et al.: Penning micro-trap for quantum computing. In: Nature 627 (2024), S. 510-514. DOI: https://doi.org/10.1038/s41586-024-07111-x

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Sum total of downloads: 6




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Trapped ions in radio-frequency traps are among the leading approaches for realizing quantum computers, because of high-fidelity quantum gates and long coherence times1–3. However, the use of radio-frequencies presents several challenges to scaling, including requiring compatibility of chips with high voltages4, managing power dissipation5 and restricting transport and placement of ions6. Here we realize a micro-fabricated Penning ion trap that removes these restrictions by replacing the radio-frequency field with a 3 T magnetic field. We demonstrate full quantum control of an ion in this setting, as well as the ability to transport the ion arbitrarily in the trapping plane above the chip. This unique feature of the Penning micro-trap approach opens up a modification of the quantum charge-coupled device architecture with improved connectivity and flexibility, facilitating the realization of large-scale trapped-ion quantum computing, quantum simulation and quantum sensing.
License of this version: CC BY 4.0 Unported
Document Type: Article
Publishing status: publishedVersion
Issue Date: 2024
Appears in Collections:Fakultät für Mathematik und Physik

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1 image of flag of United States United States 3 50.00%
2 image of flag of Germany Germany 2 33.33%
3 image of flag of Iran, Islamic Republic of Iran, Islamic Republic of 1 16.67%

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