Thermochronology data from Pearya Terrane, Ellesmere Island, North Canadian Margin

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Main Authors: Vamvaka, Agni, Pross, Jörg, Monien, Patrick, Piepjohn, Karsten, Estrada, Solveig, Lisker, Frank, Spiegel, Cornelia
Format: Dataset Open Access
Language:en
Published: PANGAEA 2019
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author Vamvaka, Agni
Pross, Jörg
Monien, Patrick
Piepjohn, Karsten
Estrada, Solveig
Lisker, Frank
Spiegel, Cornelia
author_facet Vamvaka, Agni
Pross, Jörg
Monien, Patrick
Piepjohn, Karsten
Estrada, Solveig
Lisker, Frank
Spiegel, Cornelia
collection Datos científicos de ciencias marinas y ambientales
contents Thermochronology data suggest Eocene high-latitude rapid exhumation and topography formation. Enhanced exhumation of northern Ellesmere Island occurred ~67-59 Ma, ~55-48 Ma, 44-38 Ma, and 34-26 Ma. These exhumation periods largely correlate with changes of spreading rates and movement directions of the Norwegian-Greenland Sea. Main topographic growth along the Eurekan belt was temporally coincident with deposition of ice-rafted debris off eastern Greenland. We suggest that Eurekan topography growth was an important trigger for glacier formation in Greenland. Exhumation of northern Ellesmere Island was episodic and was presumably controlled by strike-slip movements along the De Geer Fracture Zone between Svalbard and Greenland. The cessation of rapid exhumation at ~26 Ma can be explained by continental separation between Greenland and Svalbard, which decoupled northern Ellesmere Island from strike-slip movements along the De Geer Fracture Zone, eventually leading to the opening of the Fram Strait.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_905014
institution PANGAEA
language en
publishDate 2019
publisher PANGAEA
record_format pangaea
spellingShingle Thermochronology data from Pearya Terrane, Ellesmere Island, North Canadian Margin
Vamvaka, Agni
Pross, Jörg
Monien, Patrick
Piepjohn, Karsten
Estrada, Solveig
Lisker, Frank
Spiegel, Cornelia
apatite fission track and (U-Th)/He thermochronology; Canadian High Arctic; Ellesmere Island; Eurekan orogeny; Pearya Terrane
Thermochronology data suggest Eocene high-latitude rapid exhumation and topography formation. Enhanced exhumation of northern Ellesmere Island occurred ~67-59 Ma, ~55-48 Ma, 44-38 Ma, and 34-26 Ma. These exhumation periods largely correlate with changes of spreading rates and movement directions of the Norwegian-Greenland Sea. Main topographic growth along the Eurekan belt was temporally coincident with deposition of ice-rafted debris off eastern Greenland. We suggest that Eurekan topography growth was an important trigger for glacier formation in Greenland. Exhumation of northern Ellesmere Island was episodic and was presumably controlled by strike-slip movements along the De Geer Fracture Zone between Svalbard and Greenland. The cessation of rapid exhumation at ~26 Ma can be explained by continental separation between Greenland and Svalbard, which decoupled northern Ellesmere Island from strike-slip movements along the De Geer Fracture Zone, eventually leading to the opening of the Fram Strait.
title Thermochronology data from Pearya Terrane, Ellesmere Island, North Canadian Margin
topic apatite fission track and (U-Th)/He thermochronology; Canadian High Arctic; Ellesmere Island; Eurekan orogeny; Pearya Terrane
url https://doi.org/10.1594/PANGAEA.905014