Robust dynamical decoupling with concatenated continuous driving

peer-reviewed
Erstveröffentlichung
2012-11-20Autoren
Cai, J-M
Naydenov, B.
Pfeiffer, R.
McGuinness, L. P.
Jahnke, K. D.
Wissenschaftlicher Artikel
Erschienen in
New Journal of Physics ; 14 (2012), 11. - Art.-Nr. 113023. - eISSN 1367-2630
Link zur Originalveröffentlichung
https://dx.doi.org/10.1088/1367-2630/14/11/113023Fakultäten
Fakultät für NaturwissenschaftenInstitutionen
Institut für Theoretische PhysikCenter for Integrated Quantum Science and Technology (IQST)
Institut für Quantenoptik
Dokumentversion
Veröffentlichte Version (Verlags-PDF)Zusammenfassung
Abstract
The loss of coherence is one of the main obstacles for the implementation of quantum information processing. The efficiency of dynamical decoupling schemes, which have been introduced to address this problem, is limited itself by the fluctuations in the driving fields which will themselves introduce noise. We address this challenge by introducing the concept of concatenated continuous dynamical decoupling, which can overcome not only external magnetic noise but also noise due to fluctuations in driving fields. We show theoretically that this approach can achieve relaxation limited coherence times, and demonstrate experimentally that already the most basic implementation of this concept yields an order of magnitude improvement to the decoherence time for the electron spin of nitrogen vacancy centers in diamond. The proposed scheme can be applied to a wide variety of other physical systems, including trapped atoms and ions and quantum dots, and may be combined with other quantum technologies challenges such as quantum sensing and quantum information processing.
EU-Projekt uulm
Q-ESSENCE / Quantum Interfaces, Sensors and Communication based on Entanglement / EC / FP7 / 248095
PICC / The physics of Ion Coulomb Crystals: Thermodynamics, Quantum control, and Quantum Simulators. / EC / FP7 / 249958
DIAMANT / Diamond based atomic nanotechnologies / EC / FP7 / 270197
PICC / The physics of Ion Coulomb Crystals: Thermodynamics, Quantum control, and Quantum Simulators. / EC / FP7 / 249958
DIAMANT / Diamond based atomic nanotechnologies / EC / FP7 / 270197
DFG-Projekt uulm
FOR 1482 / Scalable quantum logic using engineered spin in diamond / DFG / 164540649
FOR 1493 / Mechanical and Opto-mechanical Interfaces for Single Color Centers in Diamond / DFG / 164674487
TRR 21 / CO.CO.MAT / Quantenkontrolle in maßgeschneiderter Materie / DFG / 5486344
FOR 1493 / Mechanical and Opto-mechanical Interfaces for Single Color Centers in Diamond / DFG / 164674487
TRR 21 / CO.CO.MAT / Quantenkontrolle in maßgeschneiderter Materie / DFG / 5486344
Projekt uulm
QK_QuOReP / Verbundprojekt: QK_QuOReP (Quanten-Repeater-Plattform mit Methoden der Quantenoptik) - Teilprojekt: Kontrolle und Verifikation von Quantenzuständen für Repeaterkomponenten / BMBF / 16BQ1014
Schlagwörter
[GND]: Quanteninformation[LCSH]: Quantum computing
[DDC Sachgruppe]: DDC 530 / Physics
Lizenz
CC BY-NC-SA 3.0 DEMetadata
Zur LanganzeigeDOI & Zitiervorlage
Nutzen Sie bitte diesen Identifier für Zitate & Links: http://dx.doi.org/10.18725/OPARU-46824
Cai, J-M et al. (2023): Robust dynamical decoupling with concatenated continuous driving. Open Access Repositorium der Universität Ulm und Technischen Hochschule Ulm. http://dx.doi.org/10.18725/OPARU-46824
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