Crustal structure of the ultra-slow spreading Knipovich Ridge, North Atlantic, along a presumed amagmatic portion of oceanic crustal formation

Author:

Kandilarov Aleksandre,Mjelde Rolf,Okino Kyoko,Murai Yoshio

Publisher

Springer Science and Business Media LLC

Subject

Geochemistry and Petrology,Geophysics,Oceanography

Reference59 articles.

1. Andreasen AD, Dahl-Jensen T, Thybo HR, Nishimura Y (2007) The East Greenland Ridge in the North Atlantic: an integrated geophysical study of a continental sliver in a transform fault setting. J Geophys Res (in press)

2. Austegard A, Sundvor E (1991) The Svalbard Ccontinental margin: crustal structure from analysis of deep seismic profiles and gravity. Institute of Solid Earth Physics University of Bergen Seismo Series 53:1–33

3. Bown JW, White RS (1994) Variation with spreading rate of oceanic crustal thickness and geochemistry. Earth Planet Sci Lett 121:435–449. doi: 10.1016/0012-821X(94)90082-5

4. Breivik AJ, Verhoef J, Faleide JI (1999) Effect of thermal contrasts on gravity modeling at passive margins: results from the western Barents Sea. J Geophys Res 104(B7):15239–15311. doi: 10.1029/1998JB900022

5. Breivik A, Mjelde R, Grogan P, Shimamura H, Murai Y, Nishimura Y (2003) Crustal structure and transform margin development south of Svalbard based on ocean bottom seismometer data. Tectonophysics 369:37–70. doi: 10.1016/S0040-1951(03)00131-8

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