We investigate the retrieval of terrestrial precipitable water columns using a new spectral fitting method applied to Global Ozone Monitoring Experiment (GOME) data. The method is an optical absorption spectroscopy technique and employs a new approach to the opacity sampling of absorption line spectra which we apply to a little-studied visible band between 585 and 600 nm. The GOME-retrieved columns are compared with data from the European Center for Medium-Range Weather Forecasts for different orbits and show good agreement. The new retrieval algorithm is sensitive to the temperature and pressure dependence of absorption lines in general and may be easily applied to spectra of trace gases other than water vapor
International audienceAtmospheric water vapour is the most important greenhouse gas which is respons...
This study exploits nadir spectral measurements in 325-335nm range to infer total column ozone (TCO)...
This study exploits nadir spectral measurements in 325-335nm range to infer total column ozone (TCO)...
Abstract. We investigate the retrieval of terrestrial pre-cipitable water columns using a new spectr...
Global water vapour total columns have been derived from measurements of the Global Ozone Monitoring...
[1] We present the algorithm and results for a new fast forward modeling technique applied to the re...
[1] We present the algorithm and results for a new fast forward modeling technique applied to the re...
[1] We present the algorithm and results for a new fast forward modeling technique applied to the re...
We present a new total column water vapor (TCWV) retrieval algorithm in the visible blue spectral ba...
Global water vapour total column amounts have been derived from measurements of the Global Ozone Mon...
International audienceWe use a recently proposed spectral sampling technique for measurements of atm...
International audienceWe use a recently proposed spectral sampling technique for measurements of atm...
This paper presents the algorithm for the operational near real time retrieval of total and troposph...
This paper presents the algorithm for the operational near real time retrieval of total and troposph...
International audienceGlobal total water vapour columns have been derived from measurements of the G...
International audienceAtmospheric water vapour is the most important greenhouse gas which is respons...
This study exploits nadir spectral measurements in 325-335nm range to infer total column ozone (TCO)...
This study exploits nadir spectral measurements in 325-335nm range to infer total column ozone (TCO)...
Abstract. We investigate the retrieval of terrestrial pre-cipitable water columns using a new spectr...
Global water vapour total columns have been derived from measurements of the Global Ozone Monitoring...
[1] We present the algorithm and results for a new fast forward modeling technique applied to the re...
[1] We present the algorithm and results for a new fast forward modeling technique applied to the re...
[1] We present the algorithm and results for a new fast forward modeling technique applied to the re...
We present a new total column water vapor (TCWV) retrieval algorithm in the visible blue spectral ba...
Global water vapour total column amounts have been derived from measurements of the Global Ozone Mon...
International audienceWe use a recently proposed spectral sampling technique for measurements of atm...
International audienceWe use a recently proposed spectral sampling technique for measurements of atm...
This paper presents the algorithm for the operational near real time retrieval of total and troposph...
This paper presents the algorithm for the operational near real time retrieval of total and troposph...
International audienceGlobal total water vapour columns have been derived from measurements of the G...
International audienceAtmospheric water vapour is the most important greenhouse gas which is respons...
This study exploits nadir spectral measurements in 325-335nm range to infer total column ozone (TCO)...
This study exploits nadir spectral measurements in 325-335nm range to infer total column ozone (TCO)...