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Regular cuboid diamonds from placers on the northeastern Siberian platform. / Zedgenizov, D. A.; Kalinina, V. V.; Reutsky, V. N. et al.

In: Lithos, Vol. 265, 15.11.2016, p. 125-137.

Research output: Contribution to journalArticlepeer-review

Harvard

Zedgenizov, DA, Kalinina, VV, Reutsky, VN, Yuryeva, OP & Rakhmanova, MI 2016, 'Regular cuboid diamonds from placers on the northeastern Siberian platform', Lithos, vol. 265, pp. 125-137. https://doi.org/10.1016/j.lithos.2016.04.012

APA

Zedgenizov, D. A., Kalinina, V. V., Reutsky, V. N., Yuryeva, O. P., & Rakhmanova, M. I. (2016). Regular cuboid diamonds from placers on the northeastern Siberian platform. Lithos, 265, 125-137. https://doi.org/10.1016/j.lithos.2016.04.012

Vancouver

Zedgenizov DA, Kalinina VV, Reutsky VN, Yuryeva OP, Rakhmanova MI. Regular cuboid diamonds from placers on the northeastern Siberian platform. Lithos. 2016 Nov 15;265:125-137. doi: 10.1016/j.lithos.2016.04.012

Author

Zedgenizov, D. A. ; Kalinina, V. V. ; Reutsky, V. N. et al. / Regular cuboid diamonds from placers on the northeastern Siberian platform. In: Lithos. 2016 ; Vol. 265. pp. 125-137.

BibTeX

@article{150d123000264542875770df32bf88a8,
title = "Regular cuboid diamonds from placers on the northeastern Siberian platform",
abstract = "Alluvial placers of the northeastern Siberian Platform are characterized by a specific diamond population: regular cuboids, forming a continuous color series from yellowish-green to yellow and dark orange. This is the first comprehensive study of a large number of cuboid diamonds focusing on their morphology, N content and aggregation state, photoluminescence, C isotopic composition and inclusions. The cuboids are cubic (i.e. nearly flat faced) to subrounded crystals; most of them are resorbed. The cathodolominescence images and the birefringence patterns show that many cuboid diamonds record deformation. The cuboid diamonds are characterized by unusual FTIR spectra with the presence of C- (single nitrogen atom) and A- (pair of neighbour nitrogen atoms) centers, and two centers of unknown origin, termed X and Y. The presence of single substitutional nitrogen defects (C centers) in all cuboid diamonds testifies either storage in the mantle at relatively cool conditions or formation just prior to eruption of their host kimberlites. The studied diamonds are also characterized by the presence of specific set of luminescence centers: N3, H3, S1, NVo and NV−, some of which are suggested to have formed during deformation subsequent to diamond growth. The cuboid diamonds show a wide range of carbon isotope compositions from mantle-like values towards strongly 13C depleted compositions (− 6.1 to − 20.2‰ δ13C). Combined with the finding of an eclogitic sulfide inclusion, the light carbon isotope compositions link the formation of the studied cuboids to deeply subducted basic protoliths, i.e. former oceanic crust.",
keywords = "Carbon isotopes, Cuboid, Diamond, Luminescence, Nitrogen, Siberian platform",
author = "Zedgenizov, {D. A.} and Kalinina, {V. V.} and Reutsky, {V. N.} and Yuryeva, {O. P.} and Rakhmanova, {M. I.}",
year = "2016",
month = nov,
day = "15",
doi = "10.1016/j.lithos.2016.04.012",
language = "English",
volume = "265",
pages = "125--137",
journal = "Lithos",
issn = "0024-4937",
publisher = "Elsevier",

}

RIS

TY - JOUR

T1 - Regular cuboid diamonds from placers on the northeastern Siberian platform

AU - Zedgenizov, D. A.

AU - Kalinina, V. V.

AU - Reutsky, V. N.

AU - Yuryeva, O. P.

AU - Rakhmanova, M. I.

PY - 2016/11/15

Y1 - 2016/11/15

N2 - Alluvial placers of the northeastern Siberian Platform are characterized by a specific diamond population: regular cuboids, forming a continuous color series from yellowish-green to yellow and dark orange. This is the first comprehensive study of a large number of cuboid diamonds focusing on their morphology, N content and aggregation state, photoluminescence, C isotopic composition and inclusions. The cuboids are cubic (i.e. nearly flat faced) to subrounded crystals; most of them are resorbed. The cathodolominescence images and the birefringence patterns show that many cuboid diamonds record deformation. The cuboid diamonds are characterized by unusual FTIR spectra with the presence of C- (single nitrogen atom) and A- (pair of neighbour nitrogen atoms) centers, and two centers of unknown origin, termed X and Y. The presence of single substitutional nitrogen defects (C centers) in all cuboid diamonds testifies either storage in the mantle at relatively cool conditions or formation just prior to eruption of their host kimberlites. The studied diamonds are also characterized by the presence of specific set of luminescence centers: N3, H3, S1, NVo and NV−, some of which are suggested to have formed during deformation subsequent to diamond growth. The cuboid diamonds show a wide range of carbon isotope compositions from mantle-like values towards strongly 13C depleted compositions (− 6.1 to − 20.2‰ δ13C). Combined with the finding of an eclogitic sulfide inclusion, the light carbon isotope compositions link the formation of the studied cuboids to deeply subducted basic protoliths, i.e. former oceanic crust.

AB - Alluvial placers of the northeastern Siberian Platform are characterized by a specific diamond population: regular cuboids, forming a continuous color series from yellowish-green to yellow and dark orange. This is the first comprehensive study of a large number of cuboid diamonds focusing on their morphology, N content and aggregation state, photoluminescence, C isotopic composition and inclusions. The cuboids are cubic (i.e. nearly flat faced) to subrounded crystals; most of them are resorbed. The cathodolominescence images and the birefringence patterns show that many cuboid diamonds record deformation. The cuboid diamonds are characterized by unusual FTIR spectra with the presence of C- (single nitrogen atom) and A- (pair of neighbour nitrogen atoms) centers, and two centers of unknown origin, termed X and Y. The presence of single substitutional nitrogen defects (C centers) in all cuboid diamonds testifies either storage in the mantle at relatively cool conditions or formation just prior to eruption of their host kimberlites. The studied diamonds are also characterized by the presence of specific set of luminescence centers: N3, H3, S1, NVo and NV−, some of which are suggested to have formed during deformation subsequent to diamond growth. The cuboid diamonds show a wide range of carbon isotope compositions from mantle-like values towards strongly 13C depleted compositions (− 6.1 to − 20.2‰ δ13C). Combined with the finding of an eclogitic sulfide inclusion, the light carbon isotope compositions link the formation of the studied cuboids to deeply subducted basic protoliths, i.e. former oceanic crust.

KW - Carbon isotopes

KW - Cuboid

KW - Diamond

KW - Luminescence

KW - Nitrogen

KW - Siberian platform

UR - http://www.scopus.com/inward/record.url?scp=84964577470&partnerID=8YFLogxK

U2 - 10.1016/j.lithos.2016.04.012

DO - 10.1016/j.lithos.2016.04.012

M3 - Article

AN - SCOPUS:84964577470

VL - 265

SP - 125

EP - 137

JO - Lithos

JF - Lithos

SN - 0024-4937

ER -

ID: 25482242