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1.
Opt Express ; 22(21): 25333-46, 2014 Oct 20.
Article in English | MEDLINE | ID: mdl-25401567

ABSTRACT

We discuss a fiber-integrated refractive index sensor with strongly improved detection performance. The resonator has been implemented by means of focused-ion beam milling of a step index fiber and shows a sensitivity of about 1.15µm/RIU. Coating the resonator walls led to a strongly improved mirror reflectivity by a factor of about 26. Design rules for device optimization and a detailed mathematical analysis are discussed, revealing that the sensor operates as an optimized Fabry-Perot resonator. We also show that the performance of such kind of Fabry-Perot sensors is, in general, limited by the detection limit function - a quantity depending on the cavitiy's finesse and on the measurement capabilities used.


Subject(s)
Fiber Optic Technology/instrumentation , Miniaturization/instrumentation , Optical Fibers , Optical Phenomena , Refractometry/instrumentation , Limit of Detection , Microscopy, Electron, Scanning , Models, Theoretical , Signal-To-Noise Ratio
2.
Water Res ; 45(3): 1423-31, 2011 Jan.
Article in English | MEDLINE | ID: mdl-21109283

ABSTRACT

Miniaturized spectral analytical systems become ever increasingly important for in situ monitoring of natural waters' nutrients, such as nitrate, phosphate or ammonium. A miniaturized UV spectral photometer has been developed for online detection using liquid core wave guides (LCW), UV transmitting optical fibers, a low-cost miniature polychromator, and a deuterium light source. The LCWs were manufactured by coating the insides of silica glass capillaries with Teflon(®) AF 1600. Due to this setup our instrument needs only a few microliters of sample for each measurement. Nitrate can be directly detected by UV absorption spectroscopy in a spectral range between 200 and 350 nm. To separate the nitrate absorption from the superposition of other UV absorbing contaminations, a multi component analysis (MCA) software was applied to the measured spectra. With this developed photometer, nitrate levels can be determined online in inland and seawater or, if needed, in situ. It was evaluated twice in the field and the results for the measured amounts of nitrate in reservoir samples and in the North Sea are also presented in this work.


Subject(s)
Nitrates/analysis , Seawater/chemistry , Water/chemistry , Spectrophotometry, Ultraviolet
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