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Dive into the research topics where M. A. Craig is active.

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Featured researches published by M. A. Craig.


Journal of Geophysical Research | 2015

Effect of halite coatings on thermal infrared spectra

Jeff A. Berger; Penelope L. King; Andy Green; M. A. Craig; Michael Spilde; Shawn P. Wright; Tara S. Kunkel; Rachel J. Lee

Characterizing the occurrence and distribution of soluble salts on planetary surfaces allows us to model or monitor aqueous and geochemical conditions. Thermal infrared (TIR) remote sensing is useful for identifying some types of salt deposits; however, mineral abundance determinations are based on the interaction of infrared with only the top few hundred micrometers of the surface. Thus, distinguishing massive deposits from coatings presents a challenge to TIR remote sensing. To better understand the TIR properties of spectrally transmissive halite coatings, we investigated the effects of coating thickness and texture on the TIR reflectance spectra of halite-coated glasses. We analyzed two coating textures with variable thickness: (1) continuous and (2) discontinuous particulate coatings. As halite coating thickness increases, the intensity of substrate absorption bands decreases nonlinearly. The substrate is not detected with halite coatings >150 µm thick. Therefore, when coatings are present, it is not possible to apply TIR models of mineral abundances using linear deconvolution algorithms. We show that continuous and coarse particulate halite coatings increase the reflectance minimum (emissivity maximum), making them potentially detectable on planetary surfaces by the methods of Osterloo et al. (2008). However, the reflectance minimum does not change if coatings have low areal coverage (<50%) or are composed of fine particles (<5 µm). Thus, halite that forms as efflorescent coatings or has been redistributed as fine dust is not detected using TIR spectroscopy. Our results explain why Cl salts are not detected with TIR spectroscopy at many locations on Mars despite high Cl contents.


Icarus | 2006

Detection and discrimination of sulfate minerals using reflectance spectroscopy

Edward A. Cloutis; Frank C. Hawthorne; Stanley A. Mertzman; Katherine Krenn; M. A. Craig; Dionne Marcino; Michelle Methot; Johnathon Strong; John F. Mustard; Diana L. Blaney; James F. Bell; Faith Vilas


Icarus | 2008

Spectral reflectance properties of minerals exposed to simulated Mars surface conditions

Edward A. Cloutis; M. A. Craig; Roman V. Kruzelecky; Wes Jamroz; A. Scott; Frank C. Hawthorne; Stanley A. Mertzman


Icarus | 2008

Ultraviolet spectral reflectance properties of common planetary minerals

Edward A. Cloutis; Kaitlyn A. McCormack; James F. Bell; Amanda R. Hendrix; Daniel T. Bailey; M. A. Craig; Stanley A. Mertzman; Mark S. Robinson; Miriam A. Riner


Icarus | 2013

Reflectance spectra diversity of silica-rich materials: Sensitivity to environment and implications for detections on Mars

Melissa S. Rice; Edward A. Cloutis; James F. Bell; David L. Bish; Briony Horgan; Stanley A. Mertzman; M. A. Craig; R. W. Renaut; B. Gautason; B. Mountain


Journal of Geophysical Research | 2009

Distribution of hydrated minerals in the north polar region of Mars

Briony Horgan; James F. Bell; E. Z. Noe Dobrea; Edward A. Cloutis; Desmond T. Bailey; M. A. Craig; L. H. Roach; John F. Mustard


Journal of Geophysical Research | 2013

An impact origin for hydrated silicates on Mars: A synthesis

Livio L. Tornabene; Gordon R. Osinski; Alfred S. McEwen; James J. Wray; M. A. Craig; H. M. Sapers; Philip R. Christensen


Geophysical Research Letters | 2007

Stability of hydrated minerals on Mars

Edward A. Cloutis; M. A. Craig; John F. Mustard; Roman V. Kruzelecky; Wes Jamroz; Alan Scott; David L. Bish; F. Poulet; Jean-Pierre Bibring; Penelope L. King


Meteoritics & Planetary Science | 2010

Reflectance spectra of iron meteorites: Implications for spectral identification of their parent bodies

Edward A. Cloutis; Paul S. Hardersen; David L. Bish; Daniel T. Bailey; Michael J. Gaffey; M. A. Craig


Icarus | 2009

Exponential Gaussian approach for spectral modeling: The EGO algorithm I. Band saturation

Loredana Pompilio; Giuseppe Pedrazzi; Maria Sgavetti; Edward A. Cloutis; M. A. Craig; Ted L. Roush

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James F. Bell

Arizona State University

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Gordon R. Osinski

University of Western Ontario

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Paul Mann

University of Winnipeg

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