Understanding volcanic margin evolution through the lens of Norway's youngest granite

Author:

Gernigon Laurent1,Knies Jochen1,Schönenberger Jasmin1,Piraquive Alejandro1,van der Lelij Roelant1,Huyskens Magdalena H.1,Planke Sverre23,Berndt Christian4,Jones Morgan35,Millett John M.26,Mohn Geoffroy7,Alvarez Zarikian Carlos A.8

Affiliation:

1. Geological Survey of Norway (NGU) Trondheim Norway

2. Volcanic Basin Energy Research Oslo Norway

3. Department of Geosciences University of Oslo Oslo Norway

4. GEOMAR | Helmholtz Centre for Ocean Research Kiel Kiel Germany

5. Department of Ecology and Environmental Science (EMG) Umeå University Umeå Sweden

6. University of Aberdeen Aberdeen UK

7. CY Cergy Paris Université, GEC Cergy‐Pontoise France

8. International Ocean Discovery Program College Station Texas USA

Abstract

AbstractThree boreholes drilled during the International Ocean Discovery Program (IODP) Expedition 396 have yielded unexpected findings of altered granitic rocks covered by basalt flows, interbedded sediments and glacial mud near the continent‐ocean transition of the mid‐Norwegian margin. U‐Pb and K‐Ar geochronological analyses were conducted on both protolithic and authigenically formed K‐bearing minerals to determine the age of granite crystallisation and subsequent alteration episodes. The granite's crystallisation age based on 104 zircons is 56.3 ± 0.2 Ma, and subsequent exhumation along with alteration/weathering events took place between 54.7 ± 1 and 37.1 ± 1 Ma. This intrusion represents the youngest granite discovered in Norway and intruded at an extremely shallow crustal level before a rapid rift‐to‐drift transition. The shallow emplacement of granitic rock and its fast exhumation before and during the onset of volcanism holds significant implications for the syn‐ and post‐breakup tectonic evolution of volcanic margins.

Publisher

Wiley

Subject

Geology

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