A. H. Treiman
Planetary Science Institute
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Featured researches published by A. H. Treiman.
Science | 2014
Scott M. McLennan; R. B. Anderson; James F. Bell; John C. Bridges; F. Calef; John Campbell; B. C. Clark; S. M. Clegg; P. G. Conrad; A. Cousin; D. J. Des Marais; Gilles Dromart; M. D. Dyar; Lauren A. Edgar; Bethany L. Ehlmann; Claude Fabre; O. Forni; O. Gasnault; R. Gellert; S. Gordon; A. Grant; John P. Grotzinger; S. Gupta; K. E. Herkenhoff; J. A. Hurowitz; Penelope L. King; S. Le Mouélic; L. A. Leshin; R. Leveille; Kevin W. Lewis
Sedimentary rocks examined by the Curiosity rover at Yellowknife Bay, Mars, were derived from sources that evolved from an approximately average martian crustal composition to one influenced by alkaline basalts. No evidence of chemical weathering is preserved, indicating arid, possibly cold, paleoclimates and rapid erosion and deposition. The absence of predicted geochemical variations indicates that magnetite and phyllosilicates formed by diagenesis under low-temperature, circumneutral pH, rock-dominated aqueous conditions. Analyses of diagenetic features (including concretions, raised ridges, and fractures) at high spatial resolution indicate that they are composed of iron- and halogen-rich components, magnesium-iron-chlorine–rich components, and hydrated calcium sulfates, respectively. Composition of a cross-cutting dike-like feature is consistent with sedimentary intrusion. The geochemistry of these sedimentary rocks provides further evidence for diverse depositional and diagenetic sedimentary environments during the early history of Mars.
Journal of Geophysical Research | 2014
Mariek E. Schmidt; John Campbell; R. Gellert; Glynis M. Perrett; A. H. Treiman; Diana L. Blaney; A. Olilla; F. Calef; Lauren A. Edgar; Beverley E. Elliott; John P. Grotzinger; Joel A. Hurowitz; Penelope L. King; M. E. Minitti; Violaine Sautter; Kathryn M. Stack; Jeff A. Berger; John C. Bridges; Bethany L. Ehlmann; O. Forni; L. A. Leshin; Kevin W. Lewis; S. M. McLennan; D. W. Ming; H. Newsom; Irina Pradler; S. W. Squyres; Edward M. Stolper; Lucy M. Thompson; Scott J. V. VanBommel
The first four rocks examined by the Mars Science Laboratory Alpha Particle X-ray Spectrometer indicate that Curiosity landed in a lithologically diverse region of Mars. These rocks, collectively dubbed the Bradbury assemblage, were studied along an eastward traverse (sols 46–102). Compositions range from Na- and Al-rich mugearite Jake_Matijevic to Fe-, Mg-, and Zn-rich alkali-rich basalt/hawaiite Bathurst_Inlet and span nearly the entire range in FeO* and MnO of the data sets from previous Martian missions and Martian meteorites. The Bradbury assemblage is also enriched in K and moderately volatile metals (Zn and Ge). These elements do not correlate with Cl or S, suggesting that they are associated with the rocks themselves and not with salt-rich coatings. Three out of the four Bradbury rocks plot along a line in elemental variation diagrams, suggesting mixing between Al-rich and Fe-rich components. ChemCam analyses give insight to their degree of chemical heterogeneity and grain size. Variations in trace elements detected by ChemCam suggest chemical weathering (Li) and concentration in mineral phases (e.g., Rb and Sr in feldspars). We interpret the Bradbury assemblage to be broadly volcanic and/or volcaniclastic, derived either from near the Gale crater rim and transported by the Peace Vallis fan network, or from a local volcanic source within Gale Crater. High Fe and Fe/Mn in Et_Then likely reflect secondary precipitation of Fe^(3+) oxides as a cement or rind. The K-rich signature of the Bradbury assemblage, if igneous in origin, may have formed by small degrees of partial melting of metasomatized mantle.
Meteoritics & Planetary Science | 2015
Paul A. Giesting; S. P. Schwenzer; Justin Filiberto; N. A. Starkey; Ian A. Franchi; A. H. Treiman; A. G. Tindle; Monica M. Grady
Archive | 2013
Richard V. Morris; Douglas W. Ming; David F. Blake; D. T. Vaniman; David L. Bish; S. J. Chipera; Robert T. Downs; R. Gellert; A. H. Treiman; Albert S. Yen; C. N. Achilles; Rob Anderson; Thomas F. Bristow; Joy A. Crisp; D. J. Des Marais; Jack D. Farmer; John P. Grotzinger; L. A. Leshin; A. C. McAdam; J. M. Morookian; Shaunna M. Morrison; E. B. Rampe; Philippe Sarrazin; N. Spanovich; Edward M. Stolper
Archive | 2013
David L. Bish; David F. Blake; D. T. Vaniman; S. J. Chipera; Philippe Sarrazin; Richard V. Morris; D. W. Ming; A. H. Treiman; Robert T. Downs; Shaunna M. Morrison; Albert S. Yen; C. N. Achilles; J. M. Morookian; Jack D. Farmer; Joy A. Crisp; E. B. Rampe; Edward M. Stolper; David J. DesMarais; N. Spanovich; Rob Anderson
Archive | 2015
P. D. Cavanagh; David L. Bish; David F. Blake; D. T. Vaniman; Richard V. Morris; D. W. Ming; E. B. Rampe; C. N. Achilles; S. J. Chipera; A. H. Treiman; Robert T. Downs; Shaunna M. Morrison; Kim V. Fendrich; Albert S. Yen; John P. Grotzinger; Joy A. Crisp; Thomas F. Bristow; Philippe Sarrazin; Jack D. Farmer; D. J. Des Marais; Edward M. Stolper; J. M. Morookian; M. A. Wilson; N. Spanovich; Rob Anderson
Archive | 2015
Richard V. Morris; D. W. Ming; R. Gellert; D. T. Vaniman; David L. Bish; David F. Blake; S. J. Chipera; Shaunna M. Morrison; Robert T. Downs; E. B. Rampe; A. H. Treiman; Albert S. Yen; C. N. Achilles; P. D. Archer; Thomas F. Bristow; P. Cavanaugh; K. Fenrdrich; Joy A. Crisp; D. J. Des Marais; Jack D. Farmer; John P. Grotzinger; Paul R. Mahaffy; A. C. McAdam; J. M. Morookian
Archive | 2009
A. H. Treiman; S. P. Schwenzer
Archive | 2015
A. H. Treiman; David L. Bish; D. W. Ming; John P. Grotzinger; D. T. Vaniman; M. B. Baker; Jack D. Farmer; S. J. Chipera; Robert T. Downs; Richard V. Morris; E. B. Rampe; David F. Blake; J.A. Berger; P. D. Cavanagh; R. Gellert; Allen F. Glazner; Mariek E. Schmidt; Albert S. Yen; Justin Filiberto
Archive | 2017
Thomas F. Bristow; David F. Blake; D. T. Vaniman; S. J. Chipera; E. B. Rampe; John P. Grotzinger; A. C. McAdam; D. W. Ming; Shaunna M. Morrison; Albert S. Yen; Richard V. Morris; Robert T. Downs; A. H. Treiman; C. N. Achilles; P. I. Craig; David J. Des Marais; J. M. Morookian; Joy A. Crisp; Robert M. Hazen