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Imaging of microwave fields using ultracold atoms
JournalArticle (Originalarbeit in einer wissenschaftlichen Zeitschrift)
 
ID 461784
Author(s) Böhi, Pascal; Riedel, Max F.; Hänsch, Theodor W.; Treutlein, Philipp
Author(s) at UniBasel Treutlein, Philipp
Böhi, Pascal
Riedel, Max
Year 2010
Title Imaging of microwave fields using ultracold atoms
Journal Applied physics letters
Volume 97
Number 5
Pages / Article-Number 051101
Keywords coplanar waveguides, hyperfine structure, microwave imaging, MMIC, radiation pressure
Abstract We report a technique that uses clouds of ultracold atoms as sensitive, tunable, and noninvasive probes for microwave field imaging with micrometer spatial resolution. The microwave magnetic field components drive Rabi oscillations on atomic hyperfine transitions whose frequency can be tuned with a static magnetic field. Readout is accomplished using state-selective absorption imaging. Quantitative data extraction is simple and it is possible to reconstruct the distribution of microwave magnetic field amplitudes and phases. While we demonstrate two-dimensional imaging, an extension to three-dimensional imaging is straightforward. We use the method to determine the microwave near-field distribution around a coplanar waveguide integrated on an atom chip.
Publisher American Institute of Physics
ISSN/ISBN 0003-6951
edoc-URL http://edoc.unibas.ch/dok/A5841510
Full Text on edoc Available
Digital Object Identifier DOI 10.1063/1.3470591
ISI-Number WOS:000281059500001
Document type (ISI) Article
 
   

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