Ultraviolet radiation is more damaging on the surface of Mars than on Earth because of the lack of an ozone shield. We investigated micro-habitats in which UV radiation could be reduced to levels similar to those found on the surface of present-day Earth, but where light in the photosynthetically active region (400-700 nm) would be above the minimum required for photosynthesis. We used a simple radiative transfer model to study four micro-habitats in which such a theoretical Martian Earth-like Photosynthetic Zone (MEPZ) might exist. A favorable radiation environment was found in martian soils containing iron, encrustations of halite, polar snows and crystalline rocks shocked by asteroid or comet impacts, all of which are known habitats for ...
Exactly 130 years passed between the discovery by Isaac Newton that white light was composed of colo...
Recent findings suggest Mars may have been a clement environment for the emergence of life, and may ...
Photosynthesis in evolution and oxygen as biosignature: Photosynthesis has been developed on Earth ...
Ultraviolet radiation is more damaging on the surface of Mars than on Earth because of the lack of a...
The biologically damaging solar ultraviolet (UV) radiation (quantified by the DNA-weighted dose) rea...
Dusty water-ice snowpacks on Mars may provide a habitable zone for DNA based photosynthetic life. Pr...
The UV radiation environment on planetary surfaces and within atmospheres is of importance in a wide...
NoOn Earth, microorganisms living under intense ultraviolet (UV) radiation stress can adopt endolith...
The UV radiation environment on planetary surfaces and within atmospheres is of importance in a wide...
UV radiation on the surface of Mars is an important factor affecting the survivability of microorgan...
The UV environment of a host star affects the photochemistry in the atmosphere, and ultimately the s...
Three aspects of the Habitability of the Northern Plains of Mars to organics and terrestrial-like mi...
The ultraviolet (UV) environment of Mars has been investigated to gain an understanding of the varia...
The UV environment of a host star affects the photochemistry in the atmosphere, and ultimately the s...
Mars, the red planet and neighbor of our planet Earth is defined to be at the rims of the habitable ...
Exactly 130 years passed between the discovery by Isaac Newton that white light was composed of colo...
Recent findings suggest Mars may have been a clement environment for the emergence of life, and may ...
Photosynthesis in evolution and oxygen as biosignature: Photosynthesis has been developed on Earth ...
Ultraviolet radiation is more damaging on the surface of Mars than on Earth because of the lack of a...
The biologically damaging solar ultraviolet (UV) radiation (quantified by the DNA-weighted dose) rea...
Dusty water-ice snowpacks on Mars may provide a habitable zone for DNA based photosynthetic life. Pr...
The UV radiation environment on planetary surfaces and within atmospheres is of importance in a wide...
NoOn Earth, microorganisms living under intense ultraviolet (UV) radiation stress can adopt endolith...
The UV radiation environment on planetary surfaces and within atmospheres is of importance in a wide...
UV radiation on the surface of Mars is an important factor affecting the survivability of microorgan...
The UV environment of a host star affects the photochemistry in the atmosphere, and ultimately the s...
Three aspects of the Habitability of the Northern Plains of Mars to organics and terrestrial-like mi...
The ultraviolet (UV) environment of Mars has been investigated to gain an understanding of the varia...
The UV environment of a host star affects the photochemistry in the atmosphere, and ultimately the s...
Mars, the red planet and neighbor of our planet Earth is defined to be at the rims of the habitable ...
Exactly 130 years passed between the discovery by Isaac Newton that white light was composed of colo...
Recent findings suggest Mars may have been a clement environment for the emergence of life, and may ...
Photosynthesis in evolution and oxygen as biosignature: Photosynthesis has been developed on Earth ...