Spectroscopic detection of biological NO with a quantum cascade laser

Breath Tests Evaluation Studies as Topic Lasers Spectrum Analysis Quantum Theory Water 02 engineering and technology Carbon Dioxide Nitric Oxide 0210 nano-technology
DOI: 10.1007/s003400100562 Publication Date: 2012-01-30T01:49:45Z
ABSTRACT
Two configurations of a continuous wave quantum cascade distributed feedback laser-based gas sensor for the detection of NO at a parts per billion (ppb) concentration level, typical of biomedical applications, have been investigated. The laser was operated at liquid nitrogen temperature near lambda = 5.2 microns. In the first configuration, a 100 m optical path length multi-pass cell was employed to enhance the NO absorption. In the second configuration, a technique based on cavity-enhanced spectroscopy (CES) was utilized, with an effective path length of 670 m. Both sensors enabled simultaneous analysis of NO and CO2 concentrations in exhaled air. The minimum detectable NO concentration was found to be 3 ppb with a multi-pass cell and 16 ppb when using CES. The two techniques are compared, and potential future developments are discussed.
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