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Precise qubit control beyond the rotating wave approximation

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NJP_16_9_093022.pdf (853.9Kb)

peer-reviewed

Erstveröffentlichung
2014-09-19
Authors
Scheuer, Jochen
Kong, Xi
Said, Ressa S.
Chen, Jeson
Kurz, Andrea
et al.
Wissenschaftlicher Artikel


Published in
New Journal of Physics ; 16 (2014), 9. - Art.-Nr. 093022. - eISSN 1367-2630
Link to original publication
https://dx.doi.org/10.1088/1367-2630/16/9/093022
Faculties
Fakultät für Naturwissenschaften
Institutions
Institut für Quantenoptik
Institut für Quanten - Informationsverarbeitung
Document version
published version (publisher's PDF)
Abstract
Abstract Fast and accurate quantum operations of a single spin in room-temperature solids are required in many modern scientific areas, for instance in quantum information, quantum metrology, and magnetometry. However, the accuracy is limited if the Rabi frequency of the control is comparable with the transition frequency of the qubit due to the breakdown of the rotating wave approximation (RWA). We report here an experimental implementation of a control method based on quantum optimal control theory which does not suffer from such restriction. We demonstrate the most commonly used single qubit rotations, i.e. - and π-pulses, beyond the RWA regime with high fidelity and , respectively. They are in excellent agreement with the theoretical predictions, and . Furthermore, we perform two basic magnetic resonance experiments both in the rotating and the laboratory frames, where we are able to deliberately ‘switch’ between the frames, to confirm the robustness of our control method. Our method is general, hence it may immediately find its wide applications in magnetic resonance, quantum computing, quantum optics, and broadband magnetometry.
EU Project uulm
DIAMANT / Diamond based atomic nanotechnologies / EC / FP7 / 270197
SIQS / Simulators and Interfaces with Quantum Systems / EC / FP7 / 600645
DIADEMS / DIAmond Devices Enabled Metrology and Sensing / EC / FP7 / 611143
DFG Project THU
SPP 1601 Teilprojekt / Einzelspin EPR und NMR mit atomaren Spinsensoren in Diamant / DFG / 221269520
Subject headings
[GND]: Optimale Kontrolle
[LCSH]: Quantum computing | Control theory
[Free subject headings]: nitrogen-vacancy (NV) | optimal control | strong driving
[DDC subject group]: DDC 530 / Physics
License
CC BY 3.0
https://creativecommons.org/licenses/by/3.0/

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DOI & citation

Please use this identifier to cite or link to this item: http://dx.doi.org/10.18725/OPARU-46243

Scheuer, Jochen et al. (2022): Precise qubit control beyond the rotating wave approximation. Open Access Repositorium der Universität Ulm und Technischen Hochschule Ulm. http://dx.doi.org/10.18725/OPARU-46243
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