Area of research
Astronomy and Astrophysics · Aerospace Engineering
Research interest
Research interests include Planetary Science and Exploration, Astro and Planetary Science, Space Exploration and Technology, and Isotope Analysis in Ecology.
The Chemistry and Mineralogy (CheMin) X-ray Diffractometer on the MSL Curiosity Rover: A Decade of Mineralogy from Gale Crater, Mars
Manganese-Iron Phosphate Nodules at the Groken Site, Gale Crater, Mars
Mars Science Laboratory CheMin Data From the Glen Torridon Region and the Significance of Lake‐Groundwater Interactions in Interpreting Mineralogy and Sedimentary History
The Curiosity Rover's Exploration of Glen Torridon, Gale Crater, Mars: An Overview of the Campaign and Scientific Results
Organic carbon concentrations in 3.5-billion-year-old lacustrine mudstones of Mars
Sedimentary Organics in Glen Torridon, Gale Crater, Mars: Results From the SAM Instrument Suite and Supporting Laboratory Analyses
X‐Ray Amorphous Sulfur‐Bearing Phases in Sedimentary Rocks of Gale Crater, Mars
Life Underground: Investigating Microbial Communities and Their Biomarkers in Mars‐Analog Lava Tubes at Craters of the Moon National Monument and Preserve
Brine-driven destruction of clay minerals in Gale crater, Mars
A Review of the Phyllosilicates in Gale Crater as Detected by the CheMin Instrument on the Mars Science Laboratory, Curiosity Rover
Solar-System-Wide Significance of Mars Polar Science
Mineralogy of Vera Rubin Ridge From the Mars Science Laboratory CheMin Instrument
Evidence for Multiple Diagenetic Episodes in Ancient Fluvial‐Lacustrine Sedimentary Rocks in Gale Crater, Mars
Indigenous and exogenous organics and surface–atmosphere cycling inferred from carbon and oxygen isotopes at Gale crater
Formation of Tridymite and Evidence for a Hydrothermal History at Gale Crater, Mars
Benzoic Acid as the Preferred Precursor for the Chlorobenzene Detected on Mars: Insights from the Unique Cumberland Analog Investigation
Organic matter preserved in 3-billion-year-old mudstones at Gale crater, Mars
Clay mineral diversity and abundance in sedimentary rocks of Gale crater, Mars
Sand Mineralogy Within the Bagnold Dunes, Gale Crater, as Observed In Situ and From Orbit
In Situ Analysis of Opal in Gale Crater, Mars
Large sulfur isotope fractionations in Martian sediments at Gale crater
Surveying Clay Mineral Diversity in the Murray Formation, Gale Crater, Mars
Lunar and Planetary Science Conference 2017cited by 9position: middle
Fluids during diagenesis and sulfate vein formation in sediments at Gale crater, Mars
Organic molecules in the Sheepbed Mudstone, Gale Crater, Mars
Evidence for indigenous nitrogen in sedimentary and aeolian deposits from the <i>Curiosity</i> rover investigations at Gale crater, Mars
Mineralogy, provenance, and diagenesis of a potassic basaltic sandstone on Mars: CheMin X‐ray diffraction of the Windjana sample (Kimberley area, Gale Crater)
Sulfur-bearing phases detected by evolved gas analysis of the Rocknest aeolian deposit, Gale Crater, Mars
Volatile, Isotope, and Organic Analysis of Martian Fines with the Mars Curiosity Rover
Volatile and Organic Compositions of Sedimentary Rocks in Yellowknife Bay, Gale Crater, Mars
Abundances and implications of volatile‐bearing species from evolved gas analysis of the Rocknest aeolian deposit, Gale Crater, Mars