The acidic sulfate-rich waters of the Meridiani Planum region were potentially a habitable environment for iron-oxidizing bacteria on ancient Mars. If life existed in this ancient martian environment, jarosite minerals precipitating in these waters may record evidence of this biological activity. Since the Meridiani jarosite is thermodynamically stable at the martian surface, any biosignatures preserved in the jarosites may be readily available for analysis in the current surface sediments during the ongoing robotic exploration of Mars. However, thermal decomposition experiments indicate that organic compound detection of sediments containing jarosite may be challenging when using pyrolysis experiments; the instrument commonly used to asses...
We have investigated how morphological biosignatures (i.e., features related to life) might be ident...
Discovery of a remnant habitable environment by the Mars Science Laboratory in the sedimentary recor...
The NASA Mars 2020 Perseverance rover is currently exploring Jezero crater, a Noachian–Hesperian loc...
The acidic sulfate-rich waters of the Meridiani Planum region were potentially a habitable environme...
The detection of potential biosignatures with mineral matrices is part of a multifaceted approach in...
The detection of jarosite (K)Fe3(SO4)2OH6 on Mars has been interpreted as mineralogical evidence of ...
The detection of potential biosignatures with mineral matrices is part of a multifaceted approach in...
Jarosite on Mars is of significant geological and astrobiological interest as it forms in acidic aqu...
<p> Jarosite is the first definitely discovered ferric sulfate mineral on Mars, indicating a highly...
Two miniaturized Mössbauer spectrometers are part of the Athena instrument package of the NASA ...
In 2020, Raman spectrometers will be deployed on Mars to study the composition of the surface when t...
Coastal cliffs fringing the Arabian Sea near Varkala exhibits the Warkalli Formation of the Tertiary...
The search for life on Mars has relied on infrared spectroscopy from orbit and in situ rovers to det...
We describe how the exploration of the Martian environment would be considerably enhanced through th...
More than 3.5 billion years ago, the surface of Mars experienced habitable conditions compatible wit...
We have investigated how morphological biosignatures (i.e., features related to life) might be ident...
Discovery of a remnant habitable environment by the Mars Science Laboratory in the sedimentary recor...
The NASA Mars 2020 Perseverance rover is currently exploring Jezero crater, a Noachian–Hesperian loc...
The acidic sulfate-rich waters of the Meridiani Planum region were potentially a habitable environme...
The detection of potential biosignatures with mineral matrices is part of a multifaceted approach in...
The detection of jarosite (K)Fe3(SO4)2OH6 on Mars has been interpreted as mineralogical evidence of ...
The detection of potential biosignatures with mineral matrices is part of a multifaceted approach in...
Jarosite on Mars is of significant geological and astrobiological interest as it forms in acidic aqu...
<p> Jarosite is the first definitely discovered ferric sulfate mineral on Mars, indicating a highly...
Two miniaturized Mössbauer spectrometers are part of the Athena instrument package of the NASA ...
In 2020, Raman spectrometers will be deployed on Mars to study the composition of the surface when t...
Coastal cliffs fringing the Arabian Sea near Varkala exhibits the Warkalli Formation of the Tertiary...
The search for life on Mars has relied on infrared spectroscopy from orbit and in situ rovers to det...
We describe how the exploration of the Martian environment would be considerably enhanced through th...
More than 3.5 billion years ago, the surface of Mars experienced habitable conditions compatible wit...
We have investigated how morphological biosignatures (i.e., features related to life) might be ident...
Discovery of a remnant habitable environment by the Mars Science Laboratory in the sedimentary recor...
The NASA Mars 2020 Perseverance rover is currently exploring Jezero crater, a Noachian–Hesperian loc...