International audienceThe rheology and thermodynamical evolution of magma, either in reservoirs, conduits or at the surface, are governed by temperature. To determine the field temperature, remote sensing methods based on measuring the infrared radiance are widely applied, but they are subject to assumptions and caveats that can propagate into large uncertainties. This is related to the poor knowledge of one of the most critical parameters, namely the spectral emissivity. In this work we aim at filling this gap through in situ spectral emissivity measurements performed over wide temperature (700-1600 K) and spectral ranges (1.25-25 µm) on two representative phonolitic compositions from Erebus (Antartica) and Teide (Spain) volcanoes. The lab...
Spectral emissivity is a seldom measured parameter, and it is generally assumed to be a constant. Ho...
Remote sensing is an established technological solution for bridging critical gaps in volcanic haza...
Spaceborne detection and measurements of high-temperature thermal anomalies enable monitoring and fo...
International audienceThe rheology and thermodynamical evolution of magma, either in reservoirs, con...
International audienceThe temperature of magma is an important parameter to understand the activity ...
International audienceTemperature is a key parameter controlling the rheology of lava flows. However...
International audienceTemperature (T) is a key parameter controlling the rheology of lava flows. Sin...
Real time thermal remote sensing of active volcanic systems is a crucial technique for understanding...
International audienceTemperature is a key parameter controlling the rheology of lava flows. Unfortu...
International audienceTemperature is a key parameter controlling the evolution of lava flows. The ha...
Temperature is a key parameter controlling the rheology of lava flows. However, the unpredictable ha...
International audienceLava flows are one of the main hazards related to effusive basaltic volcanism....
Lava flows are one of the main hazards related to effusive basaltic volcanism. To minimize their imp...
Spectral emissivity is a seldom measured parameter, and it is generally assumed to be a constant. Ho...
Remote sensing is an established technological solution for bridging critical gaps in volcanic haza...
Spaceborne detection and measurements of high-temperature thermal anomalies enable monitoring and fo...
International audienceThe rheology and thermodynamical evolution of magma, either in reservoirs, con...
International audienceThe temperature of magma is an important parameter to understand the activity ...
International audienceTemperature is a key parameter controlling the rheology of lava flows. However...
International audienceTemperature (T) is a key parameter controlling the rheology of lava flows. Sin...
Real time thermal remote sensing of active volcanic systems is a crucial technique for understanding...
International audienceTemperature is a key parameter controlling the rheology of lava flows. Unfortu...
International audienceTemperature is a key parameter controlling the evolution of lava flows. The ha...
Temperature is a key parameter controlling the rheology of lava flows. However, the unpredictable ha...
International audienceLava flows are one of the main hazards related to effusive basaltic volcanism....
Lava flows are one of the main hazards related to effusive basaltic volcanism. To minimize their imp...
Spectral emissivity is a seldom measured parameter, and it is generally assumed to be a constant. Ho...
Remote sensing is an established technological solution for bridging critical gaps in volcanic haza...
Spaceborne detection and measurements of high-temperature thermal anomalies enable monitoring and fo...