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Spectra of extremely reduced assemblages: Implications for Mercury

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dc.contributor.author Burbine, Thomas H. en
dc.contributor.author McCoy, Timothy J. en
dc.contributor.author Nittler, Larry R. en
dc.contributor.author Benedix, Gretchen K. en
dc.contributor.author Cloutis, Edward A. en
dc.contributor.author Dickinson, Tamara L. en
dc.date.accessioned 2013-04-09T19:33:19Z
dc.date.available 2013-04-09T19:33:19Z
dc.date.issued 2002
dc.identifier.citation Burbine, Thomas H., McCoy, Timothy J., Nittler, Larry R., Benedix, Gretchen K., Cloutis, Edward A., and Dickinson, Tamara L. 2002. "<a href="https%3A%2F%2Frepository.si.edu%2Fhandle%2F10088%2F20454">Spectra of extremely reduced assemblages: Implications for Mercury</a>." <em>Meteoritics & Planetary Science</em>. 37 (9):1233&ndash;1244. en
dc.identifier.issn 1086-9379
dc.identifier.uri http://hdl.handle.net/10088/20454
dc.description.abstract We investigate the possibility that Mercury&#39;s crust is very reduced with FeO concentrations of less than 02DC0.1 wt%. We believe that such a surface could have a composition of enstatite, plagioclase, diopside, and sulfide, similar to the mineral assemblages found in aubritic meteorites. To test this hypothesis, we investigated the spectra of aubrites and their constituent minerals as analogs for the surface of Mercury. We found that some sulfides have distinctive absorption features in their spectra shortwards of 02DC0.6 03BCm that may be apparent in the spectrum of such an object. Determination of the surface composition of Mercury using orbital x-ray spectroscopy should easily distinguish between a lunar highlands and enstatite basalt composition since these materials have significant differences in concentrations of Al, Mg, S, and Fe. The strongest argument against Mercury having an enstatite basalt composition is its extreme spectral redness. Significant reddening of the surface of an object (such as Mercury) is believed to require reduction of FeO to nanophase iron, thus requiring a few percent FeO in the material prior to alteration. en
dc.relation.ispartof Meteoritics & Planetary Science en
dc.title Spectra of extremely reduced assemblages: Implications for Mercury en
dc.type Journal Article en
dc.identifier.srbnumber 81529
rft.jtitle Meteoritics & Planetary Science
rft.volume 37
rft.issue 9
rft.spage 1233
rft.epage 1244
dc.description.SIUnit NH-Mineral Sciences en
dc.description.SIUnit NMNH en
dc.citation.spage 1233
dc.citation.epage 1244


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