The micro and nanostructures of Martian soil simulants with particles in the micrometre-size range have been studied using a combination of optical and atomic force microscopy (AFM) in preparation for the 2007 NASA Phoenix Mars Lander mission. The operation of an atomic force microscope on samples of micrometre-sized soil particles is a poorly investigated area where the unwanted interaction between the scanning tip and loose particles results in poor image quality and tip contamination by the sample. In order to mitigate these effects, etched silicon substrates with a variety of features have been used to facilitate the sorting and gripping of particles. From these experiments, a number of patterns were identified that were particularly go...
The Phoenix microscopy station, designed for the study of Martian dust and soil, consists of a sampl...
High resolution AFM images of the surface topography of 5 microm diameter spherical silica particles...
A procedure was developed for handling natural soil particles and probing their native surface struc...
The micro and nanostructures of Martian soil simulants with particles in the micrometre-size range h...
The micro and nanostructures of Martian soil simulants with particles in the micrometre-size range h...
The Phoenix Mars Lander includes a Microscopy, Electrochemistry and Conductivity Analyser (MECA) ins...
The Phoenix Mars Lander includes a Microscopy, Electrochemistry and Conductivity Analyser (MECA) in...
Extended abstract of a paper presented at Microscopy and Microanalysis 2011 in Nashville, Tennessee,...
Chemical stabilization is one of the common soil improvement methods to stabilize expansive soils. T...
We have developed, built and tested an atomic force microscope (AFM) for planetary science applica...
The particle size distribution (PSD) of a Martian soil sample, a useful indicator of the underlying ...
[1] The optical microscope onboard the Phoenix spacecraft has returned color images (4 μm pixel−1) o...
The optical microscope onboard the Phoenix spacecraft has returned color images (4 ?m pixel?1) of so...
Within the last 2 years our consortium has developed, built and tested an atomic force microscope fo...
We show that atomic force microscopy (AFM) phase images can reveal surface features of soil dust par...
The Phoenix microscopy station, designed for the study of Martian dust and soil, consists of a sampl...
High resolution AFM images of the surface topography of 5 microm diameter spherical silica particles...
A procedure was developed for handling natural soil particles and probing their native surface struc...
The micro and nanostructures of Martian soil simulants with particles in the micrometre-size range h...
The micro and nanostructures of Martian soil simulants with particles in the micrometre-size range h...
The Phoenix Mars Lander includes a Microscopy, Electrochemistry and Conductivity Analyser (MECA) ins...
The Phoenix Mars Lander includes a Microscopy, Electrochemistry and Conductivity Analyser (MECA) in...
Extended abstract of a paper presented at Microscopy and Microanalysis 2011 in Nashville, Tennessee,...
Chemical stabilization is one of the common soil improvement methods to stabilize expansive soils. T...
We have developed, built and tested an atomic force microscope (AFM) for planetary science applica...
The particle size distribution (PSD) of a Martian soil sample, a useful indicator of the underlying ...
[1] The optical microscope onboard the Phoenix spacecraft has returned color images (4 μm pixel−1) o...
The optical microscope onboard the Phoenix spacecraft has returned color images (4 ?m pixel?1) of so...
Within the last 2 years our consortium has developed, built and tested an atomic force microscope fo...
We show that atomic force microscopy (AFM) phase images can reveal surface features of soil dust par...
The Phoenix microscopy station, designed for the study of Martian dust and soil, consists of a sampl...
High resolution AFM images of the surface topography of 5 microm diameter spherical silica particles...
A procedure was developed for handling natural soil particles and probing their native surface struc...