Chemical heterogeneity on Mercury's surface revealed by the MESSENGER X-Ray Spectrometer

dc.contributor.authorWeider, Shoshana Z.
dc.contributor.authorNittler, Larry R.
dc.contributor.authorStarr, Richard D.
dc.contributor.authorMcCoy, Timothy J.
dc.contributor.authorStockstill-Cahill, Karen R.
dc.contributor.authorByrne, Paul K.
dc.contributor.authorDenevi, Brett W.
dc.contributor.authorHead, James W.
dc.contributor.authorSolomon, Sean C.
dc.date.accessioned2013-04-29T16:22:42Z
dc.date.available2013-04-29T16:22:42Z
dc.date.issued2012
dc.description.abstractWe present the analysis of 205 spatially resolved measurements of the surface composition of Mercury from MESSENGER's X-Ray Spectrometer. The surface footprints of these measurements are categorized according to geological terrain. Northern smooth plains deposits and the plains interior to the Caloris basin differ compositionally from older terrain on Mercury. The older terrain generally has higher Mg/Si, S/Si, and Ca/Si ratios, and a lower Al/Si ratio than the smooth plains. Mercury's surface mineralogy is likely dominated by high-Mg mafic minerals (e.g., enstatite), plagioclase feldspar, and lesser amounts of Ca, Mg, and/or Fe sulfides (e.g., oldhamite). The compositional difference between the volcanic smooth plains and the older terrain reflects different abundances of these minerals and points to the crystallization of the smooth plains from a more chemically evolved magma source. High-degree partial melts of enstatite chondrite material provide a generally good compositional and mineralogical match for much of the surface of Mercury. An exception is Fe, for which the low surface abundance on Mercury is still higher than that of melts from enstatite chondrites and may indicate an exogenous contribution from meteoroid impacts.
dc.format.extentE00L05–E00L05
dc.identifier2169-9097
dc.identifier.citationWeider, Shoshana Z., Nittler, Larry R., Starr, Richard D., McCoy, Timothy J., Stockstill-Cahill, Karen R., Byrne, Paul K., Denevi, Brett W., Head, James W., and Solomon, Sean C. 2012. "<a href="https://repository.si.edu/handle/10088/20576">Chemical heterogeneity on Mercury&#39;s surface revealed by the MESSENGER X-Ray Spectrometer</a>." <em>Journal of Geophysical Research. E. Planets</em>, 117 E00L05–E00L05. <a href="https://doi.org/10.1029/2012JE004153">https://doi.org/10.1029/2012JE004153</a>.
dc.identifier.issn2169-9097
dc.identifier.urihttp://hdl.handle.net/10088/20576
dc.publisherAmerican Geophysical Union
dc.relation.ispartofJournal of Geophysical Research. E. Planets 117
dc.titleChemical heterogeneity on Mercury&#39;s surface revealed by the MESSENGER X-Ray Spectrometer
dc.typearticle
sro.description.unitNMNH
sro.description.unitNH-Mineral Sciences
sro.identifier.doi10.1029/2012JE004153
sro.identifier.itemID113714
sro.identifier.refworksID96094
sro.identifier.urlhttps://repository.si.edu/handle/10088/20576
sro.publicationPlaceWashington; 2000 Florida Ave. NW, Washington, DC 20009 USA

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