Arctic ocean mega project: Paper 2–Arctic stratigraphy and regional tectonic structure

AM Nikishin, EI Petrov, S Cloetingh, NA Malyshev… - Earth-Science …, 2021 - Elsevier
A seismic stratigraphic framework and basin fill geohistory for Arctic Ocean basins is
presented based on data collected by several Russian Government organized expeditions …

Arctic Ocean mega project: Paper 3-mesozoic to cenozoic geological evolution

AM Nikishin, EI Petrov, S Cloetingh, SI Freiman… - Earth-Science …, 2021 - Elsevier
We present an atlas of paleogeographic and paleotectonic maps which documents major
events in the Arctic for 0–157 Ma. We demonstrate that the Mendeleev Ridge has a …

[HTML][HTML] Geophysical analysis of the Alpha–Mendeleev ridge complex: characterization of the High Arctic Large Igneous Province

GN Oakey, RW Saltus - Tectonophysics, 2016 - Elsevier
Abstract The Alpha–Mendeleev ridge complex is a first-order physiographic and geological
feature of the Arctic Amerasia Basin. High amplitude “chaotic” magnetic anomalies (the High …

Seismic tomography of the Arctic region: inferences for the thermal structure and evolution of the lithosphere

S Lebedev, AJ Schaeffer, J Fullea, V Pease - 2018 - pubs.geoscienceworld.org
Waveform tomography with very large datasets reveals the upper-mantle structure of the
Arctic in unprecedented detail. Using tomography jointly with computational petrology, we …

Circum-Arctic Lithosphere Evolution (CALE) Transect C: displacement of the Arctic Alaska–Chukotka microplate towards the Pacific during opening of the Amerasia …

EL Miller, KE Meisling, VV Akinin, K Brumley… - 2018 - pubs.geoscienceworld.org
This paper synthesizes the framework and geological evolution of the Arctic Alaska–
Chukotka microplate (AACM), from its origin as part of the continental platform fringing …

'Taters versus sliders: Evidence for a long-lived history of strike-slip displacement along the canadian arctic transform system (CATS)

WC McClelland, JV Strauss, M Colpron, JA Gilotti… - 2021 - repository.arizona.edu
Recent field-based studies indicate that the northern margin of North America is best
interpreted as a tectonic boundary that experienced a long, complex history of strike-slip …

Alpha-Mendeleev Rise, Arctic Ocean: a double volcanic passive margin

AM Nikishin, EA Rodina, KF Startseva, GR Foulger… - Gondwana …, 2023 - Elsevier
Data collected by several expeditions to the Arctic Ocean have yielded a seismic
stratigraphic framework and basin fill history for the Alpha-Mendeleev Rise (AMR) and …

Arctic deep water ferromanganese‐oxide deposits reflect the unique characteristics of the Arctic Ocean

JR Hein, N Konstantinova, M Mikesell… - Geochemistry …, 2017 - Wiley Online Library
Little is known about marine mineral deposits in the Arctic Ocean, an ocean dominated by
continental shelf and basins semi‐closed to deep‐water circulation. Here, we present data …

[HTML][HTML] Age, distribution and style of deformation in Alaska north of 60° N: Implications for assembly of Alaska

TE Moore, SE Box - Tectonophysics, 2016 - Elsevier
The structural architecture of Alaska is the product of a complex history of deformation along
both the Cordilleran and Arctic margins of North America involving oceanic plates …

ArcCRUST: Arctic crustal thickness from 3‐D gravity inversion

N Lebedeva‐Ivanova, C Gaina… - Geochemistry …, 2019 - Wiley Online Library
The ArcCRUST model consists of crustal thickness and estimated crustal thinning factors
grids for the High Arctic and Circum‐Arctic regions (north of 67° N). This model is derived by …