peer reviewed—This study investigates the sensitivity of L-band (1.41 GHz) polarimetric brightness temperature signatures to oriented permittivity patterns, which can occur for example in the case of row and interrow soil moisture differences in agricultural fields. A field experiment and model simulations are conducted to verify the effects of such patterns on all four Stokes parameters. We find that for an artificial target resembling idealized model conditions, permittivity patterns lead to systematic brightness temperature modulations in dependency of the azimuthal look angle. For the specific field setup, modulations reach amplitudes of ∼ 4 K and mostly affect h-polarized brightness temperatures as well as the first, second, and third ...
Global surface soil moisture products are derived from passive L-band microwave satellite observatio...
Global surface soil moisture products are derived from passive L-band microwave satellite observatio...
The brightness temperature (T B p) observed by the Soil Moisture Active Passive (SMAP) satellite mis...
This study investigates the sensitivity of L-band (1.41 GHz) polarimetric brightness temperature sig...
L-Band microwave radiometry over land mainly focuses on observations of horizontally (H) and vertica...
Passive microwave remote sensing has long been recognized as a promising technique for soil moisture...
An unexplored aspect of L-band microwave emission is the impact of soil moisture and soil temperatur...
The structure of the surface soil layer is strongly influenced by soil tillage practices with import...
In a combined experimental and model study, we investigated effects of surface topography (relief) o...
Many impacts of climate change will be expressed in the hydrologic cycle. Microwave radiometry is se...
L-band radiometer measurements were performed at the Selhausen remote sensing field laboratory (Germ...
International audience—Ground-based multifrequency (L-band to W-band, 1.41–90 GHz) and multiangular ...
Hourly L-band (1.4 GHz) horizontally (H) polarized brightness temperatures (T(sub B))'s measured dur...
In a combined experimental and model study, we investigated effects of surface topography (relief) o...
The emission of bare soils at microwave L-band (1 – 2 GHz) frequencies is known to be correlated wit...
Global surface soil moisture products are derived from passive L-band microwave satellite observatio...
Global surface soil moisture products are derived from passive L-band microwave satellite observatio...
The brightness temperature (T B p) observed by the Soil Moisture Active Passive (SMAP) satellite mis...
This study investigates the sensitivity of L-band (1.41 GHz) polarimetric brightness temperature sig...
L-Band microwave radiometry over land mainly focuses on observations of horizontally (H) and vertica...
Passive microwave remote sensing has long been recognized as a promising technique for soil moisture...
An unexplored aspect of L-band microwave emission is the impact of soil moisture and soil temperatur...
The structure of the surface soil layer is strongly influenced by soil tillage practices with import...
In a combined experimental and model study, we investigated effects of surface topography (relief) o...
Many impacts of climate change will be expressed in the hydrologic cycle. Microwave radiometry is se...
L-band radiometer measurements were performed at the Selhausen remote sensing field laboratory (Germ...
International audience—Ground-based multifrequency (L-band to W-band, 1.41–90 GHz) and multiangular ...
Hourly L-band (1.4 GHz) horizontally (H) polarized brightness temperatures (T(sub B))'s measured dur...
In a combined experimental and model study, we investigated effects of surface topography (relief) o...
The emission of bare soils at microwave L-band (1 – 2 GHz) frequencies is known to be correlated wit...
Global surface soil moisture products are derived from passive L-band microwave satellite observatio...
Global surface soil moisture products are derived from passive L-band microwave satellite observatio...
The brightness temperature (T B p) observed by the Soil Moisture Active Passive (SMAP) satellite mis...