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References
Оглавление1 Anderson, D.L. 2005. Scoring hotspots: The Plume and Plate Paradigms, In: Plates, Plumes and Paradigms. G.R. Foulger, J.H. Natland, D.C. Presnall and D.L. Anderson (eds). Geological Society of America, Special Paper 388, 31–54.
2 Anderson, O.B. and Knudsen, P. (2009). DNSC08 mean sea‐surface and mean dynamic topography models. Journal of Geophysical Research 114: 1–12.
3 Bown, J.W. and White, R.S. (1994). Variation with spreading rate of oceanic crustal thickness and geochemistry. Earth and Planetary Science Letters 121: 435–449.
4 Brodie, J. and White, N. (1994). Sedimentary basin inversion caused by igneous underplating: Northwest European continental shelf. Geology 22: 147–150.
5 Brooks, C.K. (1973). Rifting and doming in southern East Greenland. Nature Physical Science 244: 23–25.
6 Brooks, C.K. (2011). The East Greenland rifted volcanic margin. Geological Survey of Denmark and Greenland Bulletin 24: 92.
7 Egger, H., Heilman‐Clauren, C., and Schmitz, B. (2000). The Paleocene–Eocene boundary interval of a Tethyan deep‐sea section (Austria) and its correlation with the North Sea Basin. Bulletin Societé Géologique de France 171: 207–216.
8 Emeleus, C.H. and Bell, B.R. (2005). The Palaeogene Volcanic Districts of Scotland, 4e, 212. Nottingham: British Geological Survey.
9 Emeleus, C.H., Cheadle, M.J., Hunter, R.H. et al. (1996). The rum layered intrusion. In: Layered Intrusions (ed. C.G. Cawthorn), 403–439. Elsevier Science B.V.
10 Fitton, G. and Larsen, L.M. (2001). The geological history of the North Atlantic Ocean. Det Kongelige Danske Videnskabernes Selskab, Historisk‐filosofiske Meddelelser 82: 9–27.
11 Ganerød, M., Smethurst, M.A., Torsvik, T.H. et al. (2010). The North Atlantic Igneous Province reconstructed and its relation to the Plume Generation Zone: the Antrim Lava Group revisited. Geophysical Journal International 182: 183–202.
12 Gee, D.G., Fossen, H., Henriksen, N., and Higgins, A.K. (2008). From the Early Paleozoic platforms of Baltica and Laurentia to the Caledonide Orogen of Scandinavia and Greenland. Episodes 31, No. 1: 44–51.
13 Hallam, T. (2004). Catastrophes and Lesser Calamities. The cause of mass extinctions., 226. Oxford University Press.
14 Hamilton, M.A., Pearson, D.G., Thompson, R.N. et al. (1998). Rapid erosion of Skye lavas inferred from precise U–Pb and Ar–Ar dating of the Rum and Cuillin plutonic complexes. Nature 394: 260–263.
15 Hansen, J., Jerram, D.A., McCaffrey, K., and Passey, S.R. (2009). The onset of the North Atlantic Igneous Province in a rifting perspective. Geological Magazine 146: 309–325.
16 Hartley, R.A., Roberts, G.G., White, N., and Richardson, C. (2011). Transient convective uplift of an ancient buried landscape. Nature Geoscience 4: 562–565.
17 Heezen, B.C., Tharp, M., and Ewing, M. (1959). The floors of the oceans. l. The North Atlantic. Geological Society of America, Special Paper, vol. 65: 122.
18 Hess, H.H. (1962). History of ocean basins. In: Petrologic Studies: A Volume to Honor A. F. Buddington (eds. A.E.J. Engel, H.L. James and B.F. Leonard), 599–620. New York: Geological Society of America.
19 Jolley, D.W. & Bell, B.R. 2002. The evolution of the North Atlantic Igneous Province and the opening of the NE Atlantic rift. In: The North Atlantic Igneous Stratigraphy, Tectonic, Volcanic and Magmatic Processes. D.W. Jolley and B.R. Bell (eds). Geological Society of London Special Publication, No. 197, 1–13.
20 Knox, R.W.O.'.R. and Morton, A.C. (1988). The record of early tertiary N. Atlantic volcanism in sediments of the North Sea Basin. In: Early Tertiary Volcanism and the Opening of the N.E. Atlantic. Special Publication 39 (eds. A.C. Morton and L.M. Parson), 407–419. London: Geological Society.
21 Koch, L. and Haller, J. (1971). Geological ap of East Greenland 72°‐76°N lat. (1:250,000). Medellelser om Grønland 183.
22 Larsen, H.C. 1988. A multiple and propagating rift model for the NE Atlantic (extended abstract). In: Early Tertiary Volcanism and the Opening of the NE Atlantic, A.C. Morton and L.M. Parson (eds), Geological Society of London Special Publication No. 39, 157–158
23 Larsen, H.C. & Jakobsdottir, S. 1988. Distribution, crustal properties and significance of seawards dipping sub‐basement reflectors off E. Greenland. In: Early Tertiary Volcanism and the Opening of the NE Atlantic. A.C. Morton and L.M. Parson (eds), Geological Society of London Special Publication No. 39, 95–114.
24 Larsen, H.C. and Saunders, A.D. (1998). Tectonism and volcanism at the southeast Greenland rifted margin; A record of plume impact and later continental rupture. In: Proceedings of the Ocean Drilling Program, vol. 152 (eds. A.D. Saunders, H.C. Larsen and R.J. Wise Jr.), 503–533. College Station, Texas (Ocean Drilling Program),: Scientific Results.
25 Larsen, H.C., Saunders, A.D., Clift, P.D. and the Shipboard Party. (1994). 1. Introduction: breakup of the Southeast Greenland margin and the formation of the Irminger Basin: background and scientific objectives. Proceedings of the Ocean Drilling Programme, Initial Reports 152: 5–16.
26 Larsen, L.‐M., Watt, W.S., and Watt, M. (1989). Geology of the lower tertiary plateau basalts of the Scoresby Sund region, East Greenland. Grønlands Geologiske Undersøgelse, Bulletin 157: 164.
27 Larsen, L.‐M., Waagstein, R., Pedersen, A.K., and Storey, M. (1999). Transatlantic correlation of the Palaeogene volcanic successions in the Faroe Islands and East Greenland. Journal of the Geological Society, London 156: 1081–1095.
28 Larsen, L.‐M., Fitton, J.G., and Pedersen, A.K. (2003). Paleogene volcanic ash layers in the Danish Basin: compositions and source areas in the North Atlantic Igneous Province. Lithos 71: 47–80.
29 Lawver, L.A. and Müller, R.D. (1994). Iceland hotspot track. Geology 22: 311–314.
30 Lovell, B. (2010). Challenged by Carbon. The Oil Industry and Climate Change, 212. Cambridge University Press.
31 MacLennan, J. and Jones, S.M. (2006). Regional uplift, gas hydrate dissociation and the origin of the Paleocene–Eocene thermal maximum. Earth & Planetary Science Letters 245: 65–80.
32 Maync, W. (1942). Stratigraphie und Fazieverhältnisse der oberpermischen Ablagerungen östgrönlands (olim “Oberkarbon‐Unterperm”) zwischen Wollaston Forland und dem Kejser Franz Josephs Fjord. Meddelelser om Grønland 115: 128.
33 Meyer, R., van Wijk, J., and Gernignon, L. (2007). The North Atlantic Igneous Province: a review of models for its formation. The Geological Society of America, Special Paper 430: 525–552.
34 Mutter, J.C., Talwani, M., and Stoffa, A. (1982). Origin of the seaward dipping reflectors in oceanic crust off the Norwegian margin by subaerial sea‐floor spreading. Geology 10: 353–357.
35 Nielsen, T.F.D. (1975). Possible mechanism of continental break‐up in the North Atlantic. Nature 253: 182–184.
36 Nielsen, T.F.D. and Brooks, C.K. (1981). The E. Greenland continental margin: an explanation of the coastal flexure. Journal of the Geological Society, London 38: 559–568.
37 Nisbet, E.G., Jones, S.M., Maclennan, J. et al. (2009). Kick‐starting ancient warming. Nature Geoscience 2: 156–159.
38 O'Connor, J.M., Stoffers, P., Wijbrans, J.R., Shannon, P.M. & Morrissey, T. 2000. Evidence from episodic seamount volcanism for pulsing of the Iceland plume in the past 70 Myr. Nature, 408. 21/28 Dec. 2000. www.Nature.com.
39 Pearson, D.G., Emeleus, C.H., and Kelley, S.P. (1996). Precise 40Ar/39Ar dating for the initiation of Palaeogene volcanism in the inner Hebrides and its regional significance. Journal of the Geological Society, London 153: 815–818.
40 Poore, H.R., White, N., and Jones, S. (2009). A Neogene chronology of Iceland plume activity from V‐shaped ridges. Earth and Planetary Science Letters 283: 1–13.
41 Poore, H., White, N. & Maclennan, J. 2011. Ocean circulation and mantle melting controlled by radial flow of hot pulses in the Iceland plume. Nature Geoscience, 4 August 2011. 558–561. http://www.nature.com/naturegeoscience.
42 Reid, J.D., Dahl‐Jensen, T., Holbrook, W.S. et al. (1997). 32‐38km thick mafic igneous crust beneath the Greenland‐Iceland Ridge. Eos, Transactions of the American Geophysical Union 78: 656.
43 Saunders, A.D., Fitton, J.G., Kerr, A.C. et al. (1997). The North Atlantic Igneous Province. In: Large Igneous Provinces: Continental, Oceanic and Planetary Flood Volcanism, American Geophysical Union, Geophysical Monograph, vol. 100 (eds. M.F. Coffin and J.J. Mahoney), 45–93.
44 Shaw Champion, M.E., White, N.J., Jones, S.M., and Lovell, J.P.B. (2008). Quantifying transient mantle convective uplift: an example from the Faroe‐Shetland basin. Tectonics 27: 1–18.
45 Smallwood, J.R. & White, R.S. 2002. Ridge‐plume interaction in the North Atlantic and its influence on continental break‐up and sea‐floor spreading. In: D.W. Jolley & B.R. Bell (eds) The North Atlantic Igneous Stratigraphy, Tectonic, Volcanic and Magmatic Processes. Geological Society of London Special Publications, No. 197, 15–18.
46 Soper, N.J., Higgins, A.C., Downie, C. et al. (1976). Late Cretaceous‐early Tertiary stratigraphy of the Kangerdlugssuaq area, East Greenland and the age of opening of the north‐east Atlantic. Journal of the Geological Society, London, 132: 85–104.
47 Svenson, H.S., Planke, A., Malthe‐Sorenssen, B. et al. (2004). Release of methane from a volcanic basin as a mechanism for initial Eocene global‐warming. Nature 429: 542–545.
48 Thompson, R. (1993). Sea‐floor spreading and plate‐tectonics. In: P. McLeod Duff. (ed.),. In: Holmes’ Principles of Physical Geology, 4e, 641–663. London: Chapman Hall.
49 Upton, B.G.J., Emeleus, C.H., and Hald, N. (1980). Tertiary volcanism between 74° and 76°N, NE Greenland: Hold with Hope and Gauss Halvø. Journal of the Geological Society, London 137: 491–508.
50 Upton, B.G.J., Skovgard, A.C., McClurg, J. et al. (2002). Picritic magmas and the Rum ultramafic complex. Geological Magazine 139: 437–452.
51 Vann, J.R. 1978. The siting of Tertiary vulcanicity. In: Bowes, D.R. & Leake, B.E. (eds). Crustal Evolution in North‐Western Britain and Adjacent Regions. Geological Journal Special Issue, 10, 393–414.
52 Vine, F.J. and Matthews, D.H. (1963). Magnetic anomalies over ocean ridges. Nature 199: 947–949.
53 Vink, G.E. (1984). A hotspot model for Iceland and the Vøring plateau. Journal of Geophysical Research 89: 9949–9959.
54 Vogt, P. (1971). Asthenospheric motion recorded by the ocean floor south of Iceland. Earth and Planetary Science Letters 13: 153–160.
55 Wager, L.R. (1934). Geological investigations in East Greenland part 1. General Geology from Angmasalik to Kap Dalton. Meddelelser om Grønland 105 (2): 46.
56 Wager, L.R. (1947). Geological investigations in East Greenland part lV. The stratigraphy and tectonics of Knud Rasmussens land and the Kangerdlugssuaq region. Meddelelser om Grønland 134 (3): 64.
57 Walker, G.P.L. (1979). The environment of tertiary volcanism in Britain. (abstract). Bulletin of the Geological Survey of Great Britain 70: 5–6.
58 White, R.S. 1988. A hot‐spot model for early Tertiary volcanism in the N. Atlantic. In: Early Tertiary Volcanism and the Opening of the NE Atlantic. A.C. Morton & L.M. Parson (eds), Geological Society of London Special Publication No. 39, 157–160.
59 White, R.S. (1997). Rift‐plume interaction in the North Atlantic. Philosophical Transactions of the Royal Society, London, Series A 355: 319–339.
60 White, N. and Lovell, B. (1997). Measuring the pulse of a plume with the sedimentary record. Nature 387: 888–891.
61 White, R.S. and McKenzie, D.P. (1989). Magmatism at rift zones: the generation of volcanic continental margins and flood basalts. Journal of Geophysical Research 94: 7685–7729.
62 White, R.S. and McKenzie, D.P. (1995). Mantle plumes and flood basalts. Journal of Geophysical Research 100: 17,543–17,585.
63 White, R.S., Bown, J.W., and Smallwood, J.R. (1995). The temperature of the Iceland plume and origin of outward propagating V‐shaped ridges. Journal of the Geological Society, London 152: 1039–1045.
64 Wolfe, C.J., Bjarnason, I.T., van Decar, J.C., and Soloman, S.C. (1997). Seismic structure of the Icelandic mantle plume. Nature 385: 245–247.
65 Wright, J.D. and Miller, K.G. (1996). Control of North Atlantic deep water circulation by the Greenland–Scotland ridge. Palaeoceanography 11 (21): 157–170.