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Archean tectonic processes from seismic reflection surveys of the Superior, Yilgarn, and Pilbara cratons

Following deep seismic reflection surveys on the Yilgarn and Pilbara cratons by Geoscience Australia with the Geological Survey of Western Australia and on the Superior Craton by the Canadian Lithoprobe program, these cratons are now some of the best surveyed Archean regions on Earth. We present seismic images that highlight how variations in crustal architecture relate to differences in Archean tectonic processes between cratons. All cratons are characterized by a mostly non-reflective 4–12 km-thick uppermost crust due to the presence of large granitoid plutons and gneissic domains. Localized regions of upper crustal seismic reflectivity are typically interpreted as supracrustal rocks and mafic sills or faults and shear zones. The middle and lower Archean crust contains variably complex geometries of relatively high amplitude reflections, though in some regions, such as the Eastern Goldfields Superterrane and the Abitibi Greenstone Belt, the lower crust appears less reflective than the middle crust. Crustal thicknesses vary from 30 km in the eastern Pilbara to 35–40 km across much of the Yilgarn and Superior, though thicknesses as great as 45–52 km occur locally in the latter two cratons. The characteristics of the Archean crust-mantle boundary, or Moho, which is commonly well-defined, differs between cratons, indicating significant variations in the tectonic processes that have driven the final stages of crustal evolution. Dipping reflections in the uppermost mantle linked to convergent crustal structures are interpreted as relict subduction scars.


In the southern Superior Craton, Moho offsets and northdipping reflections in the middle and lower crust arose through successive underthrusting of Meso-Neoarchean island arcs, oceanic plateaux and microcontinental fragments, as they accreted against a pre-existing northern nucleus (e.g. North Caribou and Opatica terranes). Seismic reflection lines reveal a doubly vergent orogen above north-dipping mantle reflections that indicate subduction drive accretion. Post-orogenic crustal extension, which is inferred from crustal-scale normal shear zones and dropped greenstone belts, has not erased the original accretionary crustal architecture. In contrast, in the Yilgarn Craton interior, accretionary structures are less clear and there are no prominent offsets in the Moho. In the Youanmi Terrane, which represents the cratonic nucleus, a pervasive fabric of listric east-dipping mid-crustal reflections soles out into the upper part of subhorizontal lower crustal reflections. We interpret this reflective fabric to be the result of widespread crustal collapse during the late stage of craton evolution at c. 2.65–2.6 Ga that also produced subsidence of the upper crust. Though terrane boundaries can be identified in seismic data across the Eastern Goldfields Superterrane, these boundaries have commonly been modified by extension, which also overprinted any accretionary lower crustal structures, perhaps simultaneous with widespread intrusion of post-tectonic melts. Exhumation of moderately reflective, amphibolite to granulite facies crust in the Narryer Terrane above dipping mantle reflectors indicates that shortening along the northwestern edge of the Yilgarn Craton was subduction driven. In the eastern Pilbara Craton, shallowly dipping to subhorizontal reflections in the middle and lower crust preclude crustal-scale vertical tectonic movements and imply that the vertical displacements inferred from surface mapping were largely confined to the upper crust.


<div>The abstract accompanies a talk the describes the architecture and and related tectonic processes of several Archean cratons based on reflection seismic interpretations. </div>

This Abstract was submitted to & presented at the 2023 6th International Archean Symposium (6IAS) 25 - 27 July ( https://6ias.org/)

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Identification info

Date (Creation)
2023-02-03T20:00:00
Date (Publication)
2023-09-11T00:12:52
Citation identifier
Geoscience Australia Persistent Identifier/https://pid.geoscience.gov.au/dataset/ga/147681

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Commonwealth of Australia (Geoscience Australia)

Voice
Author

Calvert, A.J.

External Contact
Author

Doublier, M.

Internal Contact
Author

Gessner, K.

External Contact
Name

6th International Archean Symposium 25-27 July 2023 Fremantle Perth WA

Purpose

The abstract accompanies a conference presentation.

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Completed
Point of contact
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Resource provider

Minerals, Energy and Groundwater Division

External Contact
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Commonwealth of Australia (Geoscience Australia)

Voice
Point of contact

Doublier, M.

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  • Geoscientific information

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W


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Product data repository: Various Formats

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Data Store directory containing the digital product files

Data Store directory containing one or more files, possibly in a variety of formats, accessible to Geoscience Australia staff only for internal purposes

Keywords
  • seismic interpretation

Keywords
  • Reflection Seismic

Keywords
  • Archean

Keywords
  • Lithospheric architecture

theme.ANZRC Fields of Research.rdf
  • Seismology and seismic exploration

  • Structural geology and tectonics

Keywords
  • Published_External

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Title

Creative Commons Attribution-NonCommercial 4.0 International Licence

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CC-BY-NC

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4.0

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https://creativecommons.org/licenses/by-nc/4.0/

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© Commonwealth of Australia (Geoscience Australia) 2023

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Title

Australian Government Security Classification System

Edition date
2018-11-01T00:00:00
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https://www.protectivesecurity.gov.au/Pages/default.aspx

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Unclassified
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Australian Government Security Classification System

Language
English
Character encoding
UTF8

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Commonwealth of Australia (Geoscience Australia)

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Link to Conference Page

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<div>This is a conference abstract for an oral presentation. </div>

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Title

Australian Government Security Classification System

Edition date
2018-11-01T00:00:00
Website

https://www.protectivesecurity.gov.au/Pages/default.aspx

Classification
Unclassified

Metadata

Metadata identifier
urn:uuid/473f8f4b-47be-4251-adfe-95a1b0b37094

Title

GeoNetwork UUID

Language
English
Character encoding
UTF8
Contact
Role Organisation / Individual Name Details
Point of contact

Commonwealth of Australia (Geoscience Australia)

Voice
Point of contact

Doublier, M.

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Document
Name

Conference Abstract

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Title

Geoscience Australia - short identifier for metadata record with

uuid

Citation identifier
eCatId/147681

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https://ecat.ga.gov.au/geonetwork/srv/eng/catalog.search#/metadata/473f8f4b-47be-4251-adfe-95a1b0b37094

Date info (Creation)
2023-09-10T23:49:26
Date info (Revision)
2023-09-10T23:49:26

Metadata standard

Title

AU/NZS ISO 19115-1:2014

Metadata standard

Title

ISO 19115-1:2014

Metadata standard

Title

ISO 19115-3

Title

Geoscience Australia Community Metadata Profile of ISO 19115-1:2014

Edition

Version 2.0, September 2018

Citation identifier
http://pid.geoscience.gov.au/dataset/ga/122551

 
 

Spatial extent

N
S
E
W


Keywords

theme.ANZRC Fields of Research.rdf
Seismology and seismic exploration Structural geology and tectonics

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