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A small mode volume tunable microcavity: development and characterization
JournalArticle (Originalarbeit in einer wissenschaftlichen Zeitschrift)
 
ID 2831918
Author(s) Greuter, Lukas; Starosielec, Sebastian; Najer, Daniel; Ludwig, Arne; Duempelmann, Luc; Rohner, Dominik; Warburton, Richard J.
Author(s) at UniBasel Warburton, Richard
Greuter, Lukas
Starosielec, Sebastian
Najer, Daniel
Rohner, Dominik
Year 2014
Title A small mode volume tunable microcavity: development and characterization
Journal Applied Physics Letters
Volume 105
Number 12
Pages / Article-Number 121105
Abstract We report the realization of a spatially and spectrally tunable air-gap Fabry-Pérot type microcavity of high finesse and cubic-wavelength-scale mode volume. These properties are attractive in the fields of opto-mechanics, quantum sensing, and foremost cavity quantum electrodynamics. The major design feature is a miniaturized concave mirror with atomically smooth surface and radius of curvature as low as 10 μm produced by CO2 laser ablation of fused silica. We demonstrate excellent mode-matching of a focussed laser beam to the microcavity mode and confirm from the frequencies of the resonator modes that the effective optical radius matches the physical radius. With these small radii, we demonstrate wavelength-size beam waists. We also show that the microcavity is sufficiently rigid for practical applications: in a cryostat at 4 K, the root-mean-square microcavity length fluctuations are below 5 pm.
Publisher AIP Publishing
ISSN/ISBN 0003-6951 ; 1077-3118
edoc-URL http://edoc.unibas.ch/dok/A6337955
Full Text on edoc Available
Digital Object Identifier DOI 10.1063/1.4896415
ISI-Number 000343004400005
Document type (ISI) Article
 
   

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