Lithospheric domains and controls on kimberlite emplacement, Slave Province, Canada: Evidence from elastic thickness and upper mantle composition

被引:13
|
作者
Djomani, YHP [1 ]
Griffin, WL
O'Reilly, SY
Doyle, BJ
机构
[1] Macquarie Univ, Dept Earth & Planetary Sci, GEMOC ARC Natl Key Ctr, Sydney, NSW 2109, Australia
[2] CSIRO Explorat & Min, N Ryde, NSW 1670, Australia
[3] Lithosphere Serv Buddy Doyle Inc, Burnaby, BC V5C 1R4, Canada
关键词
Slave Craton mantle; elastic thickness; deep lithosphere structure; Canada kimberlite emplacement; lithospheric mantle composition; Exploration Geophysics : gravity methods geochemistry : composition of the mantle; tectonophysics : lithospheric flexure; Geographic Location : North America;
D O I
10.1029/2005GC000978
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
[1] We have mapped the deep structure of the Slave craton by combining analysis the effective elastic thickness (Te) with data on mantle samples from numerous kimberlites. Three-dimensional mapping of the subcontinental lithospheric mantle (SCLM), using mantle-derived xenoliths and xenocrysts in kimberlites, has shown that much of the craton is underlain by a strongly layered SCLM; a highly depleted upper layer ( low in basaltic components Ca, Al, Fe) is separated from a relatively fertile lower layer by a sharp boundary. This boundary lies at 140 - 150 km depth in the Lac de Gras area and shallows to <= 100 km in the northern and southern parts of the Craton. Weak lithosphere ( Te < 25 km) on the northern edge of the craton may reflect the intrusion of the Mackenzie Plume ( circa 1270 Ma). The strongest lithosphere ( Te > 56 km), in the younger eastern part of the craton, is separated from the older western part by a zone of steep Te gradient parallel to the major locus of kimberlite intrusion, which may map the deep extension of the boundary between the two domains. Another strong Te gradient across the Kilohigok Basin accompanies a marked compositional change in the upper layer of the lithospheric mantle; the Basin probably marks a major translithospheric fault. Correlations between Te and mantle composition suggest that Te is strongly influenced by the rheology of the upper mantle.
引用
收藏
页数:16
相关论文
共 10 条
  • [1] Upper-mantle stratigraphy of the Slave craton, Canada: Insights into a new kimberlite province
    Kopylova, MG
    Russell, JK
    Cookenboo, H
    GEOLOGY, 1998, 26 (04) : 315 - 318
  • [2] Metasomatism of the Lithospheric Mantle Immediately Precedes Kimberlite Eruption: New Evidence from Olivine Composition and Microstructures
    Cordier, Carole
    Sauzeat, Lucie
    Arndt, Nicholas T.
    Boullier, Anne-Marie
    Batanova, Valentina
    Barou, Fabrice
    JOURNAL OF PETROLOGY, 2015, 56 (09) : 1775 - 1795
  • [3] New constraints on the structure and composition of the lithospheric mantle beneath the Slave craton, NW Canada from 3-D magnetotelluric data-Origin of the Central Slave Mantle Conductor and possible evidence for lithospheric scale fluid flow
    Bettac, Sean P.
    Unsworth, Martyn J.
    Pearson, D. Graham
    Craven, Jim
    TECTONOPHYSICS, 2023, 851
  • [4] Thermal State, Thickness, and Composition of the Lithospheric Mantle beneath the Upper Muna Kimberlite Field (Siberian Craton) Constrained by Clinopyroxene Xenocrysts and Comparison with Daldyn and Mirny Fields
    Dymshits, Anna M.
    Sharygin, Igor S.
    Malkovets, Vladimir G.
    Yakovlev, Igor, V
    Gibsher, Anastasia A.
    Alifirova, Taisia A.
    Vorobei, Sofya S.
    Potapov, Sergey, V
    Garanin, Viktor K.
    MINERALS, 2020, 10 (06) : 1 - 20
  • [5] Composition of garnet and clinopyroxene in peridotite xenoliths from the Grib kimberlite pipe, Arkhangelsk diamond province, Russia: Evidence for mantle metasomatism associated with kimberlite melts
    Kargin, A. V.
    Sazonova, L. V.
    Nosova, A. A.
    Tretyachenko, V. V.
    LITHOS, 2016, 262 : 442 - 455
  • [6] Amphibole-Bearing Peridotite Xenoliths from Nushan,Anhui Province:Evidence for Melt Percolation Process in the Upper Mantle and Lithospheric Uplift
    徐义刚
    林传勇
    Acta Geochimica, 1997, (03) : 213 - 229
  • [7] Amphibole-bearing peridotite xenoliths from Nushan, Anhui Province: Evidence for melt percolation process in the upper mantle and lithospheric uplift
    Yigang Xu
    J. C. Mercier
    Chuanyong Lin
    Chinese Journal of Geochemistry, 1997, 16 (3): : 213 - 229
  • [8] Neoarchean decoupling of upper- and mid-crustal tectonothermal domains in the southeast Slave Province: evidence from the Walmsley Lake area
    Cairns, S
    Relf, C
    MacLachlan, K
    Davis, WJ
    CANADIAN JOURNAL OF EARTH SCIENCES, 2005, 42 (06) : 869 - 894
  • [9] Multi-stage modification of the northern Slave mantle lithosphere: Evidence from zircon- and diamond-bearing eclogite xenoliths entrained in Jericho kimberlite, Canada
    Heaman, LM
    Creaser, RA
    Cookenboo, HO
    Chacko, T
    JOURNAL OF PETROLOGY, 2006, 47 (04) : 821 - 858
  • [10] Late Archean mantle composition and crustal growth in the Western Superior Province of Canada: Neodymium and lead isotopic evidence from the Wawa, Quetico, and Wabigoon subprovinces
    Henry, P
    Stevenson, RK
    Gariepy, C
    GEOCHIMICA ET COSMOCHIMICA ACTA, 1998, 62 (01) : 143 - 157