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Decoding low-temperature thermochronology signals in mountain belts; modelling the role of rift ther...

Decoding low-temperature thermochronology signals in mountain belts; modelling the role of rift ther...

https://devfeature-collection.sl.nsw.gov.au/record/TN_cdi_doaj_primary_oai_doaj_org_article_4ca47dbf10f841f5a1c3095b9364f2b3

Decoding low-temperature thermochronology signals in mountain belts; modelling the role of rift thermal imprint into continental collision

About this item

Full title

Decoding low-temperature thermochronology signals in mountain belts; modelling the role of rift thermal imprint into continental collision

Publisher

Paris: Société Géologique de France

Journal title

Bulletin de la Société géologique de France, 2021, Vol.192, p.38

Language

English

Formats

Publication information

Publisher

Paris: Société Géologique de France

More information

Scope and Contents

Contents

Resolving the timing of initiation and propagation of continental accretion associated with increasing topography and exhumation is a genuinely challenging task using low-temperature thermochronology. We present an integrated thermo-mechanical and low-temperature thermochronology modelling study of tectonically-inverted hyperextended rift systems....

Alternative Titles

Full title

Decoding low-temperature thermochronology signals in mountain belts; modelling the role of rift thermal imprint into continental collision

Authors, Artists and Contributors

Identifiers

Primary Identifiers

Record Identifier

TN_cdi_doaj_primary_oai_doaj_org_article_4ca47dbf10f841f5a1c3095b9364f2b3

Permalink

https://devfeature-collection.sl.nsw.gov.au/record/TN_cdi_doaj_primary_oai_doaj_org_article_4ca47dbf10f841f5a1c3095b9364f2b3

Other Identifiers

ISSN

0037-9409,1777-5817

E-ISSN

1777-5817

DOI

10.1051/bsgf/2021028

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