Icy surfaces behave differently to rocky or regolith‐covered surfaces in response to irradiation. A key factor is the ability of visible light to penetrate partially into the subsurface. This results in the solid‐state greenhouse effect, as ices can be transparent or translucent to visible and shorter wavelengths, while opaque in the infrared. This can lead to significant differences in shallow subsurface temperature profiles when compared to rocky surfaces. Of particular significance for modeling the solid‐state greenhouse effect is the e‐folding scale, otherwise known as the absorption scale length, or penetration depth, of the ice. While there have been measurements for water ice and snow, pure and with mixtures, to date, there have been...
Although ice fracturing and deformation is key to understanding some of the landforms encountered in...
International audienceObservations of the Martian CO ice cap in late winter and spring have revealed...
The discovery of buried carbon dioxide (CO2) ice between water (H2O) ice layers within the martian s...
Icy surfaces behave differently to rocky or regolith‐covered surfaces in response to irradiation. A ...
Icy surfaces behave differently to rocky or regolith‐covered surfaces in response to irradiation. A ...
The depth to which solar radiation can penetrate through ice is an important factor in understanding...
The penetration depth of broad spectrum solar irradiation over the wavelength range 300 nm – 1100 nm...
The penetration depth of broad spectrum solar radiation (300 nm – 1100 nm) in ices relevant to Mars ...
Mars’ polar caps are – depending on hemisphere and season - partially or totally covered...
Mars’ polar caps are – depending on hemisphere and season - partially or totally covered with CO2 ic...
AbstractMars’ polar caps are – depending on hemisphere and season - partially or totally covered wit...
Rock and soil surface layers absorb and reflect incoming solar radiation immediately at the surface....
Carbon dioxide ice is abundant on the Martian surface and plays an important role in the planet’s en...
International audienceThe mostly carbon dioxide (CO 2) atmosphere of Mars condenses and sublimes in ...
Researchers found that it is possible to grow large clear samples of CO2 ice at Mars-like temperatur...
Although ice fracturing and deformation is key to understanding some of the landforms encountered in...
International audienceObservations of the Martian CO ice cap in late winter and spring have revealed...
The discovery of buried carbon dioxide (CO2) ice between water (H2O) ice layers within the martian s...
Icy surfaces behave differently to rocky or regolith‐covered surfaces in response to irradiation. A ...
Icy surfaces behave differently to rocky or regolith‐covered surfaces in response to irradiation. A ...
The depth to which solar radiation can penetrate through ice is an important factor in understanding...
The penetration depth of broad spectrum solar irradiation over the wavelength range 300 nm – 1100 nm...
The penetration depth of broad spectrum solar radiation (300 nm – 1100 nm) in ices relevant to Mars ...
Mars’ polar caps are – depending on hemisphere and season - partially or totally covered...
Mars’ polar caps are – depending on hemisphere and season - partially or totally covered with CO2 ic...
AbstractMars’ polar caps are – depending on hemisphere and season - partially or totally covered wit...
Rock and soil surface layers absorb and reflect incoming solar radiation immediately at the surface....
Carbon dioxide ice is abundant on the Martian surface and plays an important role in the planet’s en...
International audienceThe mostly carbon dioxide (CO 2) atmosphere of Mars condenses and sublimes in ...
Researchers found that it is possible to grow large clear samples of CO2 ice at Mars-like temperatur...
Although ice fracturing and deformation is key to understanding some of the landforms encountered in...
International audienceObservations of the Martian CO ice cap in late winter and spring have revealed...
The discovery of buried carbon dioxide (CO2) ice between water (H2O) ice layers within the martian s...