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Titlebook: Cavity-Enhanced Spectroscopy and Sensing; Gianluca Gagliardi,Hans-Peter Loock Book 2014 Springer-Verlag Berlin Heidelberg 2014 Cavity Ring

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Fiber-Optic Resonators for Strain-Acoustic Sensing and Chemical Spectroscopy,d chemical sensors based on sensitivity to molecular absorption or refractive index changes. The capabilities of high-finesse fiber Bragg-grating cavities for quasi-static and dynamic strain sensing are discussed. Pound-Drever-Hall (PDH) frequency locking techniques are considered for low-noise, fas
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Fiber Loop Ringdown Sensors and Sensing,easuring . to sense a quantity, FLRD is not only able to adopt a wide variety of sensing mechanisms for individual sensor fabrication, but is also uniquely suitable for large-scale, multi-function sensor network development.
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Internationalisierung und Managementtivity of conventional cavity ring-down by more than one order of magnitude, while achieving sub-Doppler resolution, if needed. Applications to optical detection of very rare molecular species like radiocarbon dioxide and resolved molecular hyperfine structure in .O.C.O are presented.
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Internationalisierung und Managementeen studied with NICE-OHMS are described, with particular focus given to those systems that differ in some way from the ‘generic’ NICE-OHMS setup, and those spectra from which new scientific information was extracted.
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https://doi.org/10.1007/978-3-8350-5419-6easuring . to sense a quantity, FLRD is not only able to adopt a wide variety of sensing mechanisms for individual sensor fabrication, but is also uniquely suitable for large-scale, multi-function sensor network development.
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https://doi.org/10.1007/978-3-8349-9981-8orption cross section of ethyl peroxy. The self-reaction kinetics of ethyl peroxy are also studied by means of cavity ringdown spectroscopy with a continuous source. The capability of CRDS to measure dynamical effects is illustrated by work on a closely related radical, hydroxy ethyl peroxy radical.
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Innovation und Entrepreneurship of detection limits. Different approaches concerning light sources, cavity design and detection schemes are discussed and a comprehensive overview of the current literature based on a methodological classification scheme is also presented.
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