Over one-third of the global land area undergoes a seasonal transition between predominantly frozen and non-frozen conditions each year, with the land surface freeze/thaw (FT) state a significant control on hydrological and biospheric processes over northern land areas and at high elevations. The NASA Soil Moisture Active Passive (SMAP) mission produced a daily landscape FT product at 3-km spatial resolution derived from ascending and descending orbits of SMAP high-resolution L-band (1.4 GHz) radar measurements. Following the failure of the SMAP radar in July 2015, coarser (36-km) footprint SMAP radiometer inputs were used to develop an alternative daily passive microwave freeze/thaw product. In this study, in situ observations are used to ...
The states of the Earth surface in terms of high-latitude freeze and thaw (FT) cycles significantly ...
Knowing the freeze-thaw (FT) state of the land surface is essential for many aspects of weather fore...
The Soil Moisture Active and Passive mission (SMAP) will provide global maps of soil moisture conten...
Seasonal freeze-thaw (FT) impacts much of the northern hemisphere and is an important control on its...
The Soil Moisture Active Passive (SMAP) observatory was launched January 31, 2015, and its L-band ra...
Permanently frozen and seasonally frozen soils occur over a large portion of the Earth's land surfac...
Reliable detection of freeze and thaw (FT) states is crucial for the terrestrial water cycle, biogeo...
In the Northern Hemisphere, seasonal changes in surface freeze–thaw (FT) cycles are an important com...
The Soil Moisture Active/Passive (SMAP) mission is scheduled for a late 2014 launch date. The missio...
The article of the freeze/thaw dynamic of high-latitude Earth surfaces is extremely important and in...
A technique was developed for mapping the spatial extent of frozen soils from the spectral character...
The Soil Moisture Active/Passive (SMAP) mission is scheduled for a late 2014 launch date. The missio...
Passive microwave measurements from space are known to be sensitive to the freeze/thaw (F/T) state o...
NASA's Soil Moisture Active Passive (SMAP) mission launched on January 31, 2015 into a sun-synchrono...
The Soil Moisture Active Passive (SMAP) observatory was launched January 31, 2015, and its L-band ra...
The states of the Earth surface in terms of high-latitude freeze and thaw (FT) cycles significantly ...
Knowing the freeze-thaw (FT) state of the land surface is essential for many aspects of weather fore...
The Soil Moisture Active and Passive mission (SMAP) will provide global maps of soil moisture conten...
Seasonal freeze-thaw (FT) impacts much of the northern hemisphere and is an important control on its...
The Soil Moisture Active Passive (SMAP) observatory was launched January 31, 2015, and its L-band ra...
Permanently frozen and seasonally frozen soils occur over a large portion of the Earth's land surfac...
Reliable detection of freeze and thaw (FT) states is crucial for the terrestrial water cycle, biogeo...
In the Northern Hemisphere, seasonal changes in surface freeze–thaw (FT) cycles are an important com...
The Soil Moisture Active/Passive (SMAP) mission is scheduled for a late 2014 launch date. The missio...
The article of the freeze/thaw dynamic of high-latitude Earth surfaces is extremely important and in...
A technique was developed for mapping the spatial extent of frozen soils from the spectral character...
The Soil Moisture Active/Passive (SMAP) mission is scheduled for a late 2014 launch date. The missio...
Passive microwave measurements from space are known to be sensitive to the freeze/thaw (F/T) state o...
NASA's Soil Moisture Active Passive (SMAP) mission launched on January 31, 2015 into a sun-synchrono...
The Soil Moisture Active Passive (SMAP) observatory was launched January 31, 2015, and its L-band ra...
The states of the Earth surface in terms of high-latitude freeze and thaw (FT) cycles significantly ...
Knowing the freeze-thaw (FT) state of the land surface is essential for many aspects of weather fore...
The Soil Moisture Active and Passive mission (SMAP) will provide global maps of soil moisture conten...