From pull-apart basins to ultraslow spreading: Results from the western Barents Sea Margin
暂无分享,去创建一个
[1] J. Korenaga. Velocity–depth ambiguity and the seismic structure of large igneous provinces: a case study from the Ontong Java Plateau , 2011 .
[2] K. Bjørlykke. Petroleum Geoscience: From Sedimentary Environments to Rock Physics , 2011 .
[3] R. Mjelde,et al. Continent–ocean-transition across a trans-tensional margin segment: off Bear Island, Barents Sea , 2011 .
[4] R. Mjelde,et al. Crustal structure of the ultra-slow spreading Knipovich Ridge, North Atlantic, along a presumed ridge segment center , 2010 .
[5] K. Okino,et al. Structural analysis of fault populations along the oblique, ultra-slow spreading Knipovich Ridge, North Atlantic Ocean, 74°30′N-77°50′N , 2010 .
[6] W. Jokat,et al. Sediment deposition in the northern basins of the North Atlantic and characteristic variations in shelf sedimentation along the East Greenland margin , 2009 .
[7] T. Minshull. Geophysical characterisation of the ocean–continent transition at magma-poor rifted margins , 2009 .
[8] W. Jokat,et al. Subsidence and crustal roughness of ultra-slow spreading ridges in the northern North Atlantic and the Arctic Ocean , 2009 .
[9] R. Mjelde,et al. East Greenland Ridge in the North Atlantic Ocean: An integrated geophysical study of a continental sliver in a boundary transform fault setting , 2008 .
[10] S. Kenyon,et al. New Gravity Field for the Arctic , 2008 .
[11] R. Mjelde,et al. Crustal structure of the ultra-slow spreading Knipovich Ridge, North Atlantic, along a presumed amagmatic portion of oceanic crustal formation , 2008 .
[12] J. Faleide,et al. Opening of the Fram Strait gateway: A review of plate tectonic constraints , 2008 .
[13] M. Edwards,et al. An improved bathymetric portrayal of the Arctic Ocean: Implications for ocean modeling and geological, geophysical and oceanographic analyses , 2008 .
[14] Olav,et al. Structure and evolution of the continental margin off Norway and the Barents Sea , 2008 .
[15] J. Faleide,et al. Caledonian basement of the western Barents Sea , 2007 .
[16] M. Ritzwoller,et al. Surface wave tomography of the Barents Sea and surrounding regions , 2007 .
[17] H. Bungum,et al. A three‐dimensional geophysical model of the crust in the Barents Sea region: model construction and basement characterization , 2007 .
[18] Olav Eldholm,et al. Recurrent Pleistocene mega-failures on the SW Barents Sea margin , 2007 .
[19] J. King,et al. The early Miocene onset of a ventilated circulation regime in the Arctic Ocean , 2007, Nature.
[20] K. Høeg,et al. Experimental mechanical compaction of clay mineral aggregates—Changes in physical properties of mudstones during burial , 2007 .
[21] W. Jokat,et al. Geophysical characteristics of the ultraslow spreading Gakkel Ridge, Arctic Ocean , 2007 .
[22] L. Frazer,et al. Prediction of sediment thickness in the Norwegian-Greenland Sea from gravity inversion , 2006 .
[23] R. White,et al. Crustal structure of the Southwest Indian Ridge at 66°E: seismic constraints , 2006 .
[24] T. Brocher. Empirical relations between elastic wavespeeds and density in the Earth's crust , 2005 .
[25] H. Shimamura,et al. Crustal transect from the North Atlantic Knipovich Ridge to the Svalbard Margin west of Hornsund , 2004 .
[26] H. Schouten,et al. An ultraslow-spreading class of ocean ridge , 2003, Nature.
[27] H. Shimamura,et al. Crustal structure and transform margin development south of Svalbard based on ocean bottom seismometer data , 2003 .
[28] P. Vogt,et al. Preliminary analysis of the Knipovich Ridge segmentation: influence of focused magmatism and ridge obliquity on an ultraslow spreading system , 2002 .
[29] H. Shimamura,et al. Crustal structure between the Knipovich Ridge and the Van Mijenfjorden (Svalbard) , 2002 .
[30] S. Olaussen,et al. The geological evolution of Bjørnøya, Arctic Norway: Implications for the Barents Shelf , 2001 .
[31] C. Forsberg,et al. Deciphering Late Cenozoic development of the western Svalbard Margin from ODP Site 986 results , 2000 .
[32] H. C. Larsen,et al. Crustal structure of the southeast Greenland margin from joint refraction and reflection seismic tomography , 2000 .
[33] L. Matias,et al. Crustal structure of a super‐slow spreading centre:a seismic refraction study of Mohns Ridge, 72° N , 2000 .
[34] M. P. Smith,et al. Cambro‐Ordovician stratigraphy of Bjørnøya and North Greenland: constraints on tectonic models for the Arctic Caledonides and the Tertiary opening of the Greenland Sea , 2000 .
[35] Colin A. Zelt,et al. Modelling strategies and model assessment for wide-angle seismic traveltime data , 1999 .
[36] R. White,et al. Segmentation and melt supply at the Southwest Indian Ridge , 1999 .
[37] J. Faleide,et al. Effect of thermal contrasts on gravity modeling at passive margins: Results from the western Barents Sea , 1999 .
[38] J. Faleide,et al. Cenozoic erosion and the preglacial uplift of the Svalbard Barents Sea region , 1998 .
[39] Walter H. F. Smith,et al. New, improved version of generic mapping tools released , 1998 .
[40] I. Grevemeyer,et al. Structure and ageing of oceanic crust at 14°S on the East Pacific Rise , 1998 .
[41] Laura S. Magde,et al. Three‐dimensional mantle upwelling, melt generation, and melt migration beneath segment slow spreading ridges , 1997 .
[42] J. Faleide,et al. Cenozoic sedimentation along the southwestern Barents Sea margin in relation to uplift and erosion of the shelf , 1996 .
[43] B. Hjelstuen,et al. Cenozoic erosion and sediment yield in the drainage area of the Storfjorden Fan , 1996 .
[44] B. Hjelstuen,et al. Late Cenozoic evolution of the western Barents Sea-Svalbard continental margin , 1996 .
[45] Walter D. Mooney,et al. Seismic velocity structure and composition of the continental crust: A global view , 1995 .
[46] S. Cande,et al. Revised calibration of the geomagnetic polarity timescale for the Late Cretaceous and Cenozoic , 1995 .
[47] C. Zelt,et al. Modeling wide-angle seismic data for crustal structure: Southeastern Grenville Province , 1994 .
[48] R. White,et al. Variation with spreading rate of oceanic crustal thickness and geochemistry , 1994 .
[49] R. White,et al. Oceanic crustal thickness from seismic measurements and rare earth element inversions , 1992 .
[50] O. Eldholm,et al. The western Svalbard margin (74°–80°N) , 1988 .
[51] J. Faleide,et al. Continent-ocean transition at the western Barents Sea/Svalbard continental margin , 1987 .
[52] P. Barton. The relationship between seismic velocity and density in the continental crust — a useful constraint? , 1986 .
[53] O. Eldholm,et al. The western and northern margin off svalbard , 1979 .
[54] M. Talwani,et al. Evolution of the Norwegian-Greenland Sea , 1977 .
[55] G. Udintsev,et al. Initial Reports of the Deep Sea Drilling Project, 38 , 1976 .
[56] A. Vogel,et al. Improvement of Convergency in Iterative Gravity Interpretation , 1972 .
[57] Jan Inge Faleide,et al. Geology of the Norwegian Continental Shelf , 2010 .
[58] J. Faleide,et al. Late Mesozoic–Cenozoic evolution of the southwestern Barents Sea , 1993 .
[59] J. R. Parker,et al. Petroleum Geology of Northwest Europe: Proceedings of the 4th Conference , 1993 .
[60] Robert B. Smith,et al. Seismic traveltime inversion for 2-D crustal velocity structure , 1992 .
[61] J. Faleide,et al. Early Tertiary volcanism at the western Barents Sea margin , 1988, Geological Society, London, Special Publications.