SPECTROSCOPIC 2D-TOMOGRAPHY: RESIDUAL PRESSURE AND STRAIN AROUND MINERAL INCLUSIONS IN DIAMONDS

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dc.contributor.author Nasdala L.
dc.contributor.author Hofmeister W.
dc.contributor.author Brenker F.E.
dc.contributor.author Glinnemann J.
dc.contributor.author Gasparik T.
dc.contributor.author Harris J.W.
dc.contributor.author Stachel T.
dc.contributor.author Reese I.
dc.date.accessioned 2021-11-28T04:25:39Z
dc.date.available 2021-11-28T04:25:39Z
dc.date.issued 2003
dc.identifier https://www.elibrary.ru/item.asp?id=14268063
dc.identifier.citation European Journal of Mineralogy, 2003, 15, 6, 931-935
dc.identifier.issn 0935-1221
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/32582
dc.description.abstract We have studied high-pressure inclusions (Ca-silicates, coesite, graphite) in three large diamonds, one from the Kankan district, Guinea, and the other two from the Panda kimberlite, Ekati diamond mines, Canada. Using the in situ point-by-point mapping technique with a confocal Raman system, the mineralogy of the inclusions, as well as their area distribution pattern (e.g., of different Ca-silicate phases) and their order-disorder distribution pattern (shown for graphite/disordered carbon), were determined. Raman mapping of the host diamonds yielded 2D-tomographic pressure and strain distribution patterns and provided information on the residual pressure of the inclusions (similar to2.3 GPa for a coesite inclusion and similar to2.6 GPa for a graphite inclusion). The inclusions are surrounded by haloes of significantly enhanced pressure, several hundred mum across. These haloes exhibit complex pressure relaxation patterns that consist of micro-areas affected by both compressive and dilative strain, with the latter being intensive enough to result in apparent "negative pressures".
dc.subject Diamond
dc.title SPECTROSCOPIC 2D-TOMOGRAPHY: RESIDUAL PRESSURE AND STRAIN AROUND MINERAL INCLUSIONS IN DIAMONDS
dc.type Статья


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