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Original Articles

Shock metamorphism and hydrothermal alteration of mafic impact ejecta from the Lockne impact structure, Sweden

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Pages 119-128 | Received 18 Mar 2015, Accepted 18 Aug 2016, Published online: 29 Sep 2016

References

  • Bakker, R.J., 2009: Package FLUIDS. Part 3: correlations between equations of state, thermodynamics and fluid inclusions. Geofluids 9, 63–74.10.1111/gfl.2009.9.issue-1
  • Bodnar, R.J., 2003: Introduction to aqueous fluid systems. In I. Samson, A. Anderson & D. Marshall (eds.): Fluid inclusions: analysis and interpretation, 81–99. Mineralogical Association of Canada, Short Course 32, Vancouver, BC.
  • Claesson, S. & Lundqvist, T., 1995: Origin and ages of Proterozoic granitoids in the Bothnian basin, central Sweden. Lithos 36, 115–140.10.1016/0024-4937(95)00010-D
  • Claeson, D.T., Meurer, W.P., Hogmalm, K.J. & Larson, S.-Å., 2007: Using LA-ICPMS mapping and sector zonation to understand growth and trace-element partitioning in sector-zoned clinopyroxene oikocrysts from the Norra Ulvö Gabbro, Sweden. Journal of Petrology 48, 711–728.10.1093/petrology/egl079
  • Davis, D.W., Lowenstein, T.K. & Spencer, R.J., 1990: Melting behaviour of fluid inclusions in laboratory-grown halite crystals in the systems NaCl–H2O, NaCl–KCl–H2O, NaCl–MgCl2–H2O, and NaCl–CaCl2–H2O. Geochimica et Cosmochimica Acta 54, 591–601.10.1016/0016-7037(90)90355-O
  • Feldman, V.I., Sazonova, L.V., Mironov, Y.V. & Kapustkina, I.G., 1983: Circular structure Logancha as possible meteorite crater in basalts of the Tunguska syncline. Proceedings of the 14th Lunar and Planetary Science Conference, 191–192. Houston, TX.
  • Fredriksson, K., Dube, A., Milton, D.J. & Balasundaram, M.S., 1973: Lonar Lake, India: an impact crater in basalt. Science 180, 862–864.10.1126/science.180.4088.862
  • Hagerty, J.J. & Newsom, H.E., 2003: Hydrothermal alteration at the Lonar Lake impact structure, India: implications for impact cratering on Mars. Meteoritics and Planetary Science 38, 365–381.10.1111/maps.2003.38.issue-3
  • Gee, D.G., 1975: A tectonic model for the central part of the Scandinavian Caledonides. American Journal of Science 275-A, 468–515.
  • Gorbatschev, R., Solyom, Z. & Johansson, I., 1979: The Central Scandinavian Dolerite Group in Jämtland, central Sweden. Geologiska Föreningens i Stockholm Förhandlingar 101, 177–190.10.1080/11035897909448572
  • Hughes, C.J., 1972: Spilites, keratophyres, and the igneous spectrum. Geological Magazine 109, 513–527.10.1017/S0016756800042795
  • Högbom, A.G., 1910: Precambrian geology of Sweden. Bulletin of the Geological Institution of the University of Upsala 10, 1–80.
  • Högdahl, K., Gromet, L.P. & Claesson, S., 1996: The geochronology of a ductile shear zone in Jämtland, central Sweden. GFF 118, 14–15.10.1080/11035899609546276
  • Jaanusson, V., Larsson, K. & Karis, L., 1982: The sequence of the autochthon of Jämtland. In D.L. Burton & S.W. Williams (eds.): Field excursion guide. IV International Symposium on Ordovician System, 47–54. Paleontological Contributions from the University of Oslo 279, Oslo.
  • van den Kerkhof, A.M., 1988: The system CO2–CH4–N2 in fluid inclusions: theoretical modelling and geological applications. Ph. D. thesis. Free University Press, Amsterdam, 206 pp.
  • van den Kerkhof, A. & Thiéry, R., 2001: Carbonic inclusions. Lithos 55, 49–68.10.1016/S0024-4937(00)00038-4
  • Kollé, J.J. & Blacic, J.D., 1982: Deformation of single-crystal clinopyroxenes: 1. Mechanical twinning in diopside and hedenbergite. Journal of Geophysical Research 87, 4019–4034.10.1029/JB087iB05p04019
  • Lindström, M. & Sturkell, E.F.F., 1992: Geology of the early Palaeozoic Lockne impact structure, Central Sweden. Tectonophysics 216, 169–185.10.1016/0040-1951(92)90164-2
  • Lindström, M., Ormö, J., Sturkell, E. & von Dalwick, I., 2005: The Lockne Crater: revision and reassessment of structure and impact stratigraphy. In C. Koeberl & H. Henkel (eds.): Impact tectonics, 357–388. Springer, Berlin.
  • Lindström, M., Ormö, J. & Sturkell, E., 2008: Water-blow and resurge breccias at the Lockne marine-target impact structure. The Geological Society of America Special Paper 437, 43–54.
  • Maloof, A.C., Stewart, S.T., Swanson-Hysell, N., Louzada, K.L., Garrick-Bethell, I., Soule, S.A. & Weiss, B.P., 2007: Lonar crater, India: An analog for martian impact structures (abstr.). 38th Lunar and Planetary Science Conference, March 12–16. League City, TX, Abstract No. 2316.
  • Mansfeld, J., Sturkell, E.F.F. & Broman, C., 1998: Meteorite impact influence on a Proterozoic shear zone mineralization at Gullgruvan, Jämtland, Sweden (abstr.). Abstract Volume, 23. Nordiske Geologiska Vintermøde Aarhus, Denmark, p. 195.
  • Melosh, H.J., 1984: Impact ejection, spallation, and the origin of meteorites. Icarus 59, 234–260.10.1016/0019-1035(84)90026-5
  • Melosh, H.J., 1989: Impact cratering: a geologic process. Oxford University Press, New York. 245 pp.
  • Nayak, V.K., 1972: Glassy objects (impactite glasses?) a possible new evidence for meteoritic origin of the Lonar Crater, Maharashtra State, India. Earth and Planetary Science Letters 14, 1–6.10.1016/0012-821X(72)90070-2
  • Oakes, C.S., Bodnar, R.J. & Simonson, J.M., 1990: The system NaCl–CaCl2–H2O: I The ice liquidus at 1 atm total pressure. Geochimica et Cosmochimica Acta 54, 603–610.10.1016/0016-7037(90)90356-P
  • Ormö, J., Hill, A. & Self-Trail, J.M., 2010: A chemostratigraphic method to determine the end of impact related sedimentation at marine-target impact craters (Chesapeake Bay, Lockne, Tvären). Meteoritics & Planetary Science 45, 1206–1224.10.1111/maps.2010.45.issue-7
  • Ormö, J., Shuvalov, V.V. & Lindström, M., 2002: Numerical modeling for target water depth estimation of marine-target impact craters. Journal of Geophysical Research 107, 31–39.10.1029/2002JE001865
  • Osinski, G.R., Tornabene, L.L., Banerjee, N.R., Cockell, C.S., Flemming, R., Izawa, M.R.M., McCutcheon, J., Parnell, J., Preston, L.J., Pickersgill, A.E., Pontefract, A., Sapers, H.M. & Southam, G., 2013: Impact-generated hydrothermal systems on Earth and Mars. Icarus 224, 347–363.10.1016/j.icarus.2012.08.030
  • Patchett, P.J., 1978: Rb/Sr ages of Precambrian dolerites and syenites in southern and central Sweden. Sveriges geologiska undersökning C 747, 1–63.
  • Roedder, E., 1984: Fluid Inclusions, Volume 12, Reviews in Mineralogy, Mineralogical Society of America, Blacksburg, VA. 644 pp.
  • Rudnick, R.L. & Gao, S., 2003: Composition of the continental crust. Treatise on Geochemistry 3, 1–64.10.1016/B0-08-043751-6/03016-4
  • Seitz, J., Pasteris, J. & Chou, I.-M., 1993: Raman spectroscopic characterization of gas mixtures. I. Quantitative composition and pressure determination of CH4, N2, and their mixtures. American Journal of Science 293, 297–321.10.2475/ajs.293.4.297
  • Simon, S., 1987: Stratigraphie, Petrographie und Entstehungsbedingungen von Grobklastika in der autochthonen, Ordovizischen Schichtenfolge Jämtlands (Schweden) [Stratigraphy, Petrography and formation conditions of coarse Clastic rocks in the autochthonous Ordovician layer sequence of Jämtland (Sweden)]. Sveriges geologiska undersökning C 815, 1–156.
  • Sjöqvist, A.S.L., Lindgren, P., Mansfeld, J., Sturkell, E.F.F., Ormö, J. & Lee, M., 2012: Carbonate melt fragments in resurge deposits from the Lockne impact structure, Sweden (abstr.). 43rd Lunar and Planetary Science Conference, March 19–23. The Woodlands, TX, Abstract no 1962.
  • Sturkell, E.F.F., 1998a: The marine Lockne impact structure, Jämtland, Sweden: a review. Geologische Rundschau 87, 253–267.10.1007/s005310050208
  • Sturkell, E.F.F., 1998b: Resurge morphology of the marine Lockne impact crater, Jämtland, Sweden. Geological Magazine 135, 121–127.10.1017/S0016756897007875
  • Sturkell, E.F.F., 1998c: Impact-related Ir anomaly in the Middle Ordovician Lockne impact structure, Jämtland, Sweden. GFF 120, 333–336.10.1080/11035899801204333
  • Sturkell, E.F.F., Broman, C., Forsberg, P. & Torssander, P., 1998: Impact-related hydrothermal activity in the Lockne impact structure, Jämtland, Sweden. European Journal of Mineralogy 10, 589–606.
  • Sturkell, E. & Lindström, M., 2004: The target peneplain of the Lockne impact. Meteoritics and Planetary Science 39, 1721–1731.10.1111/maps.2004.39.issue-10
  • Stöffler, D., 1972: Deformation and transformation of rock-forming minerals by natural and experimental shock processes: I. Behaviour of minerals under shock compression. Fortschritte der Mineralogie 49, 50–113.
  • Söderlund, U., Elming, S.-Å., Ernst, R.E. & Schissel, D., 2006: The Central Scandinavian Dolerite Group – protracted hotspot activity or back-arc magmatism?: Constraints from U–Pb baddeleyite geochronology and Hf isotopic data. Precambrian Research 150, 136–152.10.1016/j.precamres.2006.07.004
  • Törnebohm, A.E., 1877: Om Sveriges vigtigare diabas- och gabbroarter [On Sweden's more important dolerite and gabbro species]. Kungliga Svenska Vetenskapsakademiens Handlingar 14, 1–55.

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