International audienceThis paper lays down the theoretical bases and the methods used in the Fast Optimal Retrievals on Layers for IASI (FORLI) software, which is developed and maintained at the "Université Libre de Bruxelles" (ULB) with the support of the "Laboratoire Atmosphères, Milieux, Observations Spatiales" (LATMOS) to process radiance spectra from the Infrared Atmospheric Sounding Interferometer (IASI) in the perspective of local to global chemistry applications. The forward radiative transfer model (RTM) and the retrieval approaches are formulated and numerical approximations are described. The aim of FORLI is near-real-time provision of global scale concentrations of trace gases from IASI, either integrated over the altitude range...
Retrieval products for temperature, water vapour and ozone have been obtained from spectral radiance...
Retrieval products for temperature, water vapour and ozone have been obtained from spectral radiance...
Retrieval products for temperature, water vapour and ozone have been obtained from spectral radiance...
International audienceThis paper lays down the theoretical bases and the methods used in the Fast Op...
International audienceThis paper lays down the theoretical bases and the methods used in the Fast Op...
International audienceThis paper lays down the theoretical bases and the methods used in the Fast Op...
International audienceThis paper lays down the theoretical bases and the methods used in the Fast Op...
International audienceThis paper lays down the theoretical bases and the methods used in the Fast Op...
The paper illustrates the new features of the line-by-line radiative transfer model σ -IASI. The new...
The paper illustrates the new features of the line-by-line radiative transfer model σ -IASI. The new...
The paper illustrates the new features of the line-by-line radiative transfer model σ -IASI. The new...
Trace gases comprise less than 1% of Earth’s atmosphere, yet they dominate the radiation budget and...
International audienceThe Infrared Atmospheric Sounding Interferometer (IASI) is a nadir‐viewing rem...
International audienceThe Infrared Atmospheric Sounding Interferometer (IASI) is a nadir‐viewing rem...
International audienceThe Infrared Atmospheric Sounding Interferometer (IASI) is a nadir‐viewing rem...
Retrieval products for temperature, water vapour and ozone have been obtained from spectral radiance...
Retrieval products for temperature, water vapour and ozone have been obtained from spectral radiance...
Retrieval products for temperature, water vapour and ozone have been obtained from spectral radiance...
International audienceThis paper lays down the theoretical bases and the methods used in the Fast Op...
International audienceThis paper lays down the theoretical bases and the methods used in the Fast Op...
International audienceThis paper lays down the theoretical bases and the methods used in the Fast Op...
International audienceThis paper lays down the theoretical bases and the methods used in the Fast Op...
International audienceThis paper lays down the theoretical bases and the methods used in the Fast Op...
The paper illustrates the new features of the line-by-line radiative transfer model σ -IASI. The new...
The paper illustrates the new features of the line-by-line radiative transfer model σ -IASI. The new...
The paper illustrates the new features of the line-by-line radiative transfer model σ -IASI. The new...
Trace gases comprise less than 1% of Earth’s atmosphere, yet they dominate the radiation budget and...
International audienceThe Infrared Atmospheric Sounding Interferometer (IASI) is a nadir‐viewing rem...
International audienceThe Infrared Atmospheric Sounding Interferometer (IASI) is a nadir‐viewing rem...
International audienceThe Infrared Atmospheric Sounding Interferometer (IASI) is a nadir‐viewing rem...
Retrieval products for temperature, water vapour and ozone have been obtained from spectral radiance...
Retrieval products for temperature, water vapour and ozone have been obtained from spectral radiance...
Retrieval products for temperature, water vapour and ozone have been obtained from spectral radiance...