The REFIR (Radiation explorer in the far infrared) project is a study, funded by European Union, of feasibility of a novel space-borne instrument that will measure the atmospheric spectral radiance of the Earth in the broad spectral range 100-1100 cm(-1) from space with sufficient spectral resolution (0.5 cm(-1)) and signal-to-noise ratio (SNR > 100). The main scientific objectives of the REFIR experiment are the measurement of the outgoing FIR radiation at the top of the atmosphere and the improvement of our knowledge of the principal drivers of this flux, e.g. temperature structure, water vapour, and clouds throughout the troposphere-surface system. The REFIR concept consists of a far infrared Fourier transform spectrometer (FTS) as the c...
Between 25-35% of the Earth's outgoing longwave radiation (OLR) lies in the far-infrared (FIR) spec ...
We describe an aircraft-based Fourier-transform spectrometer (FTS) designed to measure the Earth out...
Spectrally resolved thermal radiances measured from orbit with extremely high absolute accuracy (\u3...
In preparation for a possible space mission, a breadboard version named REFIR-BB of the Radiation Ex...
There is a growing interest in the far infrared spectral region 17-50 mu m as a remote sensing tool ...
Abstract. The outgoing long-wave radiation from the Earth’s atmosphere in the far infrared spectral ...
International audienceThe outgoing long-wave radiation from the Earth's atmosphere in the far infrar...
The Far-Infrared Radiation Mobile Observation System (FIRMOS) is a Fourier transform spectroradiomet...
The Radiation Explorer in the Far InfraRed-Prototype for Applications and Development (REFIR-PAD) sp...
This paper describes the PHyTIR (Prototype HyspIRI Thermal Infrared Radiometer) instrument, which is...
The radiative balance of the troposphere, and hence global climate, is dominated by the infrared abs...
The Far-Infrared Radiation Mobile Observation System (FIRMOS) is a Fourier transform spectroradiomet...
A far infrared radiometer (FIRR) dedicated to measuring radiation emitted by clear and cloudy atmosp...
Between 25-35% of the Earth's outgoing longwave radiation (OLR) lies in the far-infrared (FIR) spec ...
We describe an aircraft-based Fourier-transform spectrometer (FTS) designed to measure the Earth out...
Spectrally resolved thermal radiances measured from orbit with extremely high absolute accuracy (\u3...
In preparation for a possible space mission, a breadboard version named REFIR-BB of the Radiation Ex...
There is a growing interest in the far infrared spectral region 17-50 mu m as a remote sensing tool ...
Abstract. The outgoing long-wave radiation from the Earth’s atmosphere in the far infrared spectral ...
International audienceThe outgoing long-wave radiation from the Earth's atmosphere in the far infrar...
The Far-Infrared Radiation Mobile Observation System (FIRMOS) is a Fourier transform spectroradiomet...
The Radiation Explorer in the Far InfraRed-Prototype for Applications and Development (REFIR-PAD) sp...
This paper describes the PHyTIR (Prototype HyspIRI Thermal Infrared Radiometer) instrument, which is...
The radiative balance of the troposphere, and hence global climate, is dominated by the infrared abs...
The Far-Infrared Radiation Mobile Observation System (FIRMOS) is a Fourier transform spectroradiomet...
A far infrared radiometer (FIRR) dedicated to measuring radiation emitted by clear and cloudy atmosp...
Between 25-35% of the Earth's outgoing longwave radiation (OLR) lies in the far-infrared (FIR) spec ...
We describe an aircraft-based Fourier-transform spectrometer (FTS) designed to measure the Earth out...
Spectrally resolved thermal radiances measured from orbit with extremely high absolute accuracy (\u3...