The landscape freeze-thaw (F/T) state parameter derived from satellite microwave remote sensing is closely linked to the surface energy budget, hydrological activity, vegetation growing season dynamics, terrestrial carbon budgets, and land-atmosphere trace gas exchange. Satellite microwave remote sensing is well suited for global F/T monitoring due to its insensitivity to atmospheric contamination and solar illumination effects, and its strong sensitivity to the relationship between landscape dielectric properties and predominantly frozen and thawed conditions. We investigated the utility of multifrequency and dual polarization brightness temperature (Tb) measurements from the Special Sensor Microwave Imager (SSM/I) to map global patterns a...
Vegetation phenology characterizes seasonal life-cycle events that influence the carbon cycle and la...
Landscape transitions between seasonally frozen and thawed conditions occur each year over roughly 5...
A technique was developed for mapping the spatial extent of frozen soils from the spectral character...
The landscape freeze-thaw (F/T) state parameter derived from satellite microwave remote sensing is c...
The landscape freeze–thaw (FT) signal from satellite microwave remote sensing is closely linked to v...
The transition of the landscape between predominantly frozen and nonfrozen conditions in seasonally ...
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...
Knowing the freeze-thaw (FT) state of the land surface is essential for many aspects of weather fore...
The annual freeze/thaw (FT) cycle determines the potential growing season in boreal landscapes and i...
Passive microwave measurements from space are known to be sensitive to the freeze/thaw (F/T) state o...
The non-frozen (NF) season duration strongly influences the northern carbon cycle where frozen (FR) ...
Reliable detection of freeze and thaw (FT) states is crucial for the terrestrial water cycle, biogeo...
There has been a recent evolvement in the field of remote sensing after increase of number satellite...
In the terrestrial cryosphere, freeze/thaw (FT) state transitions play an important and measurable r...
Vegetation phenology characterizes seasonal life-cycle events that influence the carbon cycle and la...
Landscape transitions between seasonally frozen and thawed conditions occur each year over roughly 5...
A technique was developed for mapping the spatial extent of frozen soils from the spectral character...
The landscape freeze-thaw (F/T) state parameter derived from satellite microwave remote sensing is c...
The landscape freeze–thaw (FT) signal from satellite microwave remote sensing is closely linked to v...
The transition of the landscape between predominantly frozen and nonfrozen conditions in seasonally ...
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...
Knowing the freeze-thaw (FT) state of the land surface is essential for many aspects of weather fore...
The annual freeze/thaw (FT) cycle determines the potential growing season in boreal landscapes and i...
Passive microwave measurements from space are known to be sensitive to the freeze/thaw (F/T) state o...
The non-frozen (NF) season duration strongly influences the northern carbon cycle where frozen (FR) ...
Reliable detection of freeze and thaw (FT) states is crucial for the terrestrial water cycle, biogeo...
There has been a recent evolvement in the field of remote sensing after increase of number satellite...
In the terrestrial cryosphere, freeze/thaw (FT) state transitions play an important and measurable r...
Vegetation phenology characterizes seasonal life-cycle events that influence the carbon cycle and la...
Landscape transitions between seasonally frozen and thawed conditions occur each year over roughly 5...
A technique was developed for mapping the spatial extent of frozen soils from the spectral character...