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1.
Nature ; 436(7050): 504-9, 2005 Jul 28.
Artículo en Inglés | MEDLINE | ID: mdl-16007077

RESUMEN

Compositional mapping of Mars at the 100-metre scale with the Mars Odyssey Thermal Emission Imaging System (THEMIS) has revealed a wide diversity of igneous materials. Volcanic evolution produced compositions from low-silica basalts to high-silica dacite in the Syrtis Major caldera. The existence of dacite demonstrates that highly evolved lavas have been produced, at least locally, by magma evolution through fractional crystallization. Olivine basalts are observed on crater floors and in layers exposed in canyon walls up to 4.5 km beneath the surface. This vertical distribution suggests that olivine-rich lavas were emplaced at various times throughout the formation of the upper crust, with their growing inventory suggesting that such ultramafic (picritic) basalts may be relatively common. Quartz-bearing granitoid rocks have also been discovered, demonstrating that extreme differentiation has occurred. These observations show that the martian crust, while dominated by basalt, contains a diversity of igneous materials whose range in composition from picritic basalts to granitoids rivals that found on the Earth.

2.
Science ; 306(5702): 1733-9, 2004 Dec 03.
Artículo en Inglés | MEDLINE | ID: mdl-15576609

RESUMEN

The Miniature Thermal Emission Spectrometer (Mini-TES) on Opportunity investigated the mineral abundances and compositions of outcrops, rocks, and soils at Meridiani Planum. Coarse crystalline hematite and olivine-rich basaltic sands were observed as predicted from orbital TES spectroscopy. Outcrops of aqueous origin are composed of 15 to 35% by volume magnesium and calcium sulfates [a high-silica component modeled as a combination of glass, feldspar, and sheet silicates (approximately 20 to 30%)], and hematite; only minor jarosite is identified in Mini-TES spectra. Mini-TES spectra show only a hematite signature in the millimeter-sized spherules. Basaltic materials have more plagioclase than pyroxene, contain olivine, and are similar in inferred mineral composition to basalt mapped from orbit. Bounce rock is dominated by clinopyroxene and is close in inferred mineral composition to the basaltic martian meteorites. Bright wind streak material matches global dust. Waterlain rocks covered by unaltered basaltic sands suggest a change from an aqueous environment to one dominated by physical weathering.


Asunto(s)
Marte , Minerales , Sulfato de Calcio , Medio Ambiente Extraterrestre , Compuestos Férricos , Sedimentos Geológicos , Compuestos de Hierro , Compuestos de Magnesio , Sulfato de Magnesio , Silicatos , Nave Espacial , Sulfatos , Agua
3.
Science ; 305(5685): 800-6, 2004 Aug 06.
Artículo en Inglés | MEDLINE | ID: mdl-15297658

RESUMEN

Panoramic Camera images at Gusev crater reveal a rock-strewn surface interspersed with high- to moderate-albedo fine-grained deposits occurring in part as drifts or in small circular swales or hollows. Optically thick coatings of fine-grained ferric iron-rich dust dominate most bright soil and rock surfaces. Spectra of some darker rock surfaces and rock regions exposed by brushing or grinding show near-infrared spectral signatures consistent with the presence of mafic silicates such as pyroxene or olivine. Atmospheric observations show a steady decline in dust opacity during the mission, and astronomical observations captured solar transits by the martian moons, Phobos and Deimos, as well as a view of Earth from the martian surface.


Asunto(s)
Marte , Atmósfera , Evolución Planetaria , Medio Ambiente Extraterrestre , Compuestos Férricos , Sedimentos Geológicos , Compuestos de Hierro , Minerales , Silicatos , Sistema Solar , Análisis Espectral , Agua
4.
Science ; 305(5685): 837-42, 2004 Aug 06.
Artículo en Inglés | MEDLINE | ID: mdl-15297667

RESUMEN

The Miniature Thermal Emission Spectrometer (Mini-TES) on Spirit has studied the mineralogy and thermophysical properties at Gusev crater. Undisturbed soil spectra show evidence for minor carbonates and bound water. Rocks are olivinerich basalts with varying degrees of dust and other coatings. Dark-toned soils observed on disturbed surfaces may be derived from rocks and have derived mineralogy (+/-5 to 10%) of 45% pyroxene (20% Ca-rich pyroxene and 25% pigeonite), 40% sodic to intermediate plagioclase, and 15% olivine (forsterite 45% +/-5 to 10). Two spectrally distinct coatings are observed on rocks, a possible indicator of the interaction of water, rock, and airfall dust. Diurnal temperature data indicate particle sizes from 40 to 80 microm in hollows to approximately 0.5 to 3 mm in soils.


Asunto(s)
Marte , Minerales , Carbonatos , Sedimentos Geológicos , Interferometría , Compuestos de Hierro , Compuestos de Magnesio , Óxidos , Silicatos , Análisis Espectral , Temperatura , Agua
5.
Science ; 305(5685): 842-5, 2004 Aug 06.
Artículo en Inglés | MEDLINE | ID: mdl-15297668

RESUMEN

The Spirit landing site in Gusev Crater on Mars contains dark, fine-grained, vesicular rocks interpreted as lavas. Pancam and Mini-Thermal Emission Spectrometer (Mini-TES) spectra suggest that all of these rocks are similar but have variable coatings and dust mantles. Magnified images of brushed and abraded rock surfaces show alteration rinds and veins. Rock interiors contain

Asunto(s)
Marte , Minerales , Silicatos , Medio Ambiente Extraterrestre , Sedimentos Geológicos , Compuestos de Hierro , Compuestos de Magnesio , Óxidos , Espectroscopía de Mossbauer , Análisis Espectral , Agua
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