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Quantum metrology with nonclassical states of atomic ensembles
JournalArticle (Originalarbeit in einer wissenschaftlichen Zeitschrift)
 
ID 4494432
Author(s) Pezze, Luca; Smerzi, Augusto; Oberthaler, Markus K.; Schmied, Roman; Treutlein, Philipp
Author(s) at UniBasel Treutlein, Philipp
Schmied, Roman
Year 2018
Title Quantum metrology with nonclassical states of atomic ensembles
Journal Reviews of Modern Physics
Volume 90
Number 3
Pages / Article-Number 035005
Abstract Quantum technologies exploit entanglement to revolutionize computing, measurements, and communications. This has stimulated the research in different areas of physics to engineer and manipulate fragile many-particle entangled states. Progress has been particularly rapid for atoms. Thanks to the large and tunable nonlinearities and the well-developed techniques for trapping, controlling, and counting, many groundbreaking experiments have demonstrated the generation of entangled states of trapped ions, cold, and ultracold gases of neutral atoms. Moreover, atoms can strongly couple to external forces and fields, which makes them ideal for ultraprecise sensing and time keeping. All these factors call for generating nonclassical atomic states designed for phase estimation in atomic clocks and atom interferometers, exploiting many-body entanglement to increase the sensitivity of precision measurements. The goal of this article is to review and illustrate the theory and the experiments with atomic ensembles that have demonstrated many-particle entanglement and quantum-enhanced metrology.
Publisher American Physical Society
ISSN/ISBN 0034-6861 ; 1539-0756
edoc-URL https://edoc.unibas.ch/68431/
Full Text on edoc No
Digital Object Identifier DOI 10.1103/RevModPhys.90.035005
ISI-Number 000443686700001
Document type (ISI) Article
 
   

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29/04/2024