Zugriffsnummer 47422
Dokumenttyp Konferenzartikel in Zeitschrift Open Access Gold
Peer Review mit Peer Review
Sprache Englisch
Titel Quantum sensing of oscillating electric fields with trapped ions
Autor(in); Institution
Wolf, Fabian; QUEST Institute for Experimental Quantum Metrology, PTB-Braunschweig
Schmidt, Piet O.; QUEST Institute for Experimental Quantum Metrology, PTB-Braunschweig; Leibniz Universität Hannover, Institut für Quantenoptik, Hannover, GERMANY
Quelle/Jahr Measurement: Sensors: 18 (2021), 1 - 3
Artikelnummer 1000271
ISSN 2665-9174 (ONLINE)
DOI
Verlag Amsterdam: Elsevier
Konferenzangaben XXIII Worldd Congress of the International Measurement Confederation (IMEKO 2021), Virtual Conference, 30-03, September 2021
Freie Schlagworte Quantum metrology ; Quantum sensors ; Fock states ; Atomic clock ; Optical clock
Zusammenfassung Quantum noise is a fundamental limitation for quantum sensors and results in the so-called shot-noise limit. Nowadays, several systems such as optical clocks or gravitational wave detectors approach measurement sensitivities where this limitation poses a major contribution to the total statistical uncertainty. It is known that this limit can be overcome by preparing the probe in a non-classical state. We will give an overview over the different non-classical states that have been implemented in the motion of single trapped ions and discuss their individual advantages and limitations in metrology. Possible applications for the presented experiments are the measurement of small oscillating electric fields and trapping frequencies. The Focus will be on our experimental work on Fock states, where quantum-enhanced sensing in both scenarios is possible with the same quantum state.
Kostenfreier Zugang Open Access Gold
Rechteinformation CC BY-NC-ND 4.0 ; Creative Commons Attribution NonCommercial NoDerivatives 4.0 License
Themenbereich der Metrologie Zeit und Frequenz

Zitierung

Wolf, F. & Schmidt, P. O. (2021). Quantum sensing of oscillating electric fields with trapped ions. Measurement: Sensors, 18, 1–3. https://doi.org/10.1016/j.measen.2021.100271

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