Radiative-Transfer (RT) modeling plays a key role in interpreting the radiance measured by multispectral sensors. At-sensor radiance depends upon glacier surface material composition and intermixture of materials, solar and sensor geometry, and surface topography. To bridge the gap between investigative findings and spectral data, a physically-based (i.e., based on first principles) linkage should be established between the properties of the observed surface and the measured electromagnetic signal. Complementing the treatment of related subjects in Chapter 2 (Bishop et al., this volume), in this chapter we show how RT theory can be adapted to derive Radiative-Transfer Equations (RTEs) that are commonly employed to properly describe the radi...
A new open-source software tool, called GLAM BioLith-RT (Glacier Lakes Assisted Melting Biological L...
In this paper, we propose equations for narrowband-to-broadband (NTB) albedo conversion for glacier ...
Melt ponds occupy a large part of the Arctic sea ice in summer and strongly affect the radiative bu...
Radiative-Transfer (RT) modeling plays a key role in interpreting the radiance measured by multispec...
Present radiative transfer methods in physically based energy budget models of snow do not include a...
The snow-covered ice sheets of Antarctica and Greenland reflect most of the incoming solar radiation...
Accurate knowledge of temperate glacier mass balance is essential to understand the relationship bet...
The darkening effects of biological impurities on ice and snow have been recognized as a significant...
The international scientific community is actively engaged in assessing ice sheet and alpine glacier...
[1] A radiative transfer model for studying spectral and broadband snow surface albedo has been appl...
A multilevel spectral radiative transfer model is used to develop simple but accurate parameterizati...
An important part of the climate system of Earth are the ice sheets of Greenland and Antarctica. Cru...
Solar radiation drives the melting of Arctic sea ice in summer, but its parameterization in thermody...
This article presents albedo measurements of snow and glacier ice at Vatnajökull (Iceland) and the K...
The production of meltwater from glacier ice, which is exposed at the margins of land ice during the...
A new open-source software tool, called GLAM BioLith-RT (Glacier Lakes Assisted Melting Biological L...
In this paper, we propose equations for narrowband-to-broadband (NTB) albedo conversion for glacier ...
Melt ponds occupy a large part of the Arctic sea ice in summer and strongly affect the radiative bu...
Radiative-Transfer (RT) modeling plays a key role in interpreting the radiance measured by multispec...
Present radiative transfer methods in physically based energy budget models of snow do not include a...
The snow-covered ice sheets of Antarctica and Greenland reflect most of the incoming solar radiation...
Accurate knowledge of temperate glacier mass balance is essential to understand the relationship bet...
The darkening effects of biological impurities on ice and snow have been recognized as a significant...
The international scientific community is actively engaged in assessing ice sheet and alpine glacier...
[1] A radiative transfer model for studying spectral and broadband snow surface albedo has been appl...
A multilevel spectral radiative transfer model is used to develop simple but accurate parameterizati...
An important part of the climate system of Earth are the ice sheets of Greenland and Antarctica. Cru...
Solar radiation drives the melting of Arctic sea ice in summer, but its parameterization in thermody...
This article presents albedo measurements of snow and glacier ice at Vatnajökull (Iceland) and the K...
The production of meltwater from glacier ice, which is exposed at the margins of land ice during the...
A new open-source software tool, called GLAM BioLith-RT (Glacier Lakes Assisted Melting Biological L...
In this paper, we propose equations for narrowband-to-broadband (NTB) albedo conversion for glacier ...
Melt ponds occupy a large part of the Arctic sea ice in summer and strongly affect the radiative bu...