Carbonyl sulfide (COS) has been suggested as a useful tracer for gross primary production as it is taken up by plants in a similar way as CO2. To explore and verify the application of this novel tracer, it is highly desired to develop the ability to perform continuous and high-precision in situ atmospheric measurements of COS and CO2. In this study we have tested a quantum cascade laser spectrometer (QCLS) for its suitability to obtain accurate and high-precision measurements of COS and CO2. The instrument is capable of simultaneously measuring COS, CO2, CO and H2O after including a weak CO absorption line in the extended wavelength range. An optimal background and calibration strategy was developed based on laboratory tests to en...
Recent advances in laser spectroscopy have allowed for real-time measurements of the C-13/C-12 isoto...
International audienceWe present the first comparison of carbon monoxide (CO) measurements performed...
A quantum cascade laser-based sensing technique is presented which allows for in situ high-precision...
Tunable laser direct absorption spectroscopy is a widely used technique for the in situ sensing of a...
Tunable laser direct absorption spectroscopy is a widely used technique for the in situ sensing of a...
We review our recent results in development of high-precision laser spectroscopic instrumentation us...
A single continuous wave (CW) room-temperature (RT) quantum cascade laser (QCL) sensor based on dual...
The present paper describes a compact and cryogen-free, quantum cascade laser based absorption spect...
We present an evaluation of aircraft observations of the carbon and greenhouse gases CO2, CH4, N2O, ...
We present an evaluation of aircraft observations of the carbon and greenhouse gases CO2, CH4, N2O, ...
Recent advances in laser spectroscopy have allowed for real-time measurements of the 13C/12C isotopi...
Airborne carbon monoxide (CO) measurements based on Quantum cascade Laser infrared Absorption Spectr...
Methodologies using tunable laser absorption spectroscopy (TLAS) for quantifying carbon dioxide stab...
A new method to do stable isotope composition measurements on atmospheric CO2 is presented, using la...
Trace gas concentration measurements in the stratosphere and troposphere are critically required as ...
Recent advances in laser spectroscopy have allowed for real-time measurements of the C-13/C-12 isoto...
International audienceWe present the first comparison of carbon monoxide (CO) measurements performed...
A quantum cascade laser-based sensing technique is presented which allows for in situ high-precision...
Tunable laser direct absorption spectroscopy is a widely used technique for the in situ sensing of a...
Tunable laser direct absorption spectroscopy is a widely used technique for the in situ sensing of a...
We review our recent results in development of high-precision laser spectroscopic instrumentation us...
A single continuous wave (CW) room-temperature (RT) quantum cascade laser (QCL) sensor based on dual...
The present paper describes a compact and cryogen-free, quantum cascade laser based absorption spect...
We present an evaluation of aircraft observations of the carbon and greenhouse gases CO2, CH4, N2O, ...
We present an evaluation of aircraft observations of the carbon and greenhouse gases CO2, CH4, N2O, ...
Recent advances in laser spectroscopy have allowed for real-time measurements of the 13C/12C isotopi...
Airborne carbon monoxide (CO) measurements based on Quantum cascade Laser infrared Absorption Spectr...
Methodologies using tunable laser absorption spectroscopy (TLAS) for quantifying carbon dioxide stab...
A new method to do stable isotope composition measurements on atmospheric CO2 is presented, using la...
Trace gas concentration measurements in the stratosphere and troposphere are critically required as ...
Recent advances in laser spectroscopy have allowed for real-time measurements of the C-13/C-12 isoto...
International audienceWe present the first comparison of carbon monoxide (CO) measurements performed...
A quantum cascade laser-based sensing technique is presented which allows for in situ high-precision...