Cochise College Collected by Roger Weller
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Meteorite Impact
References-by Topic
-Shocked Minerals-Part 1
*Ahrens, T.J., and Gregson, V.G., Jr., 1964, Shock metamorphism experiments on quartz and plagioclase: in- Shock Metamorphism of Natural Materials, ed., by B.M. French and N.M, Short, p. 59, Mono, Baltimore, Md.
*Ahrens, T.J., and Gregson, V.G., Jr., 1964, Shock compression of crustal rocks: Data for quarts, calcite and plagioclase rocks: Jour. Geophys. Research, v. 69, p. 4839-4874.
*Ahrens, T.J., and Rosenberg, J.T., 1966, Shock compression and adiabatic release of polycrystalline quartz and plagioclase (abstr): EOS (Trans AGU), v. 47, n. 3, p. 493.
*Ahrens, T.J., Petersen, C.F., and Rosenberg, J.T., 1969. Shock compression of feldspars: J. Geophys. Res., v. 74, p. 2727.
*Aitken, F.K., 1971, Variation of quartz lattice parameters during peak shock pressure (abstr): EOS (Trans AGU), n. 52, n. 4, p. 264.
*Alexopoulous, J.S., Grieve, R.A.F., and Robertson, P.B., 1988, Microscopic lamellar deformation features in quartz: Discriminative chararteristics of shock-generated varieties: Geology, v. 16, p. 796-799.
*Bohor, B.F., Modreski, P.J., and Foord, E.E., 1987, Shocked quartz in the Cretaceous-Tertiary boundary clays: evidence for a global distribution: Science, v. 236, n. 4802, May, 8, 1987, p. 705-709
*Bohor, B.F., Modreski, P.J., Foord, E.E., and Triplehorn, D.M., 1984, Mineralogic evidence for an impact at the Cretaceous-Tertiary boundary: Science, v. 224, p. 867-869.
*Bohor, B.F., Betterton, W.J., and Foord, E.E., 1990, Shocked zircon and chromite in K/T boundary claystone (abstr): Meteoritics: in-Proceedings of the Abstracts of the 53rd meetings of the Meteoritical Society, v. 25, n. 4, 1990, p. 350
*Bohor, B.F. and Betterton, W.J., 1991, Maximum shocked grain dimensions from K/T ejecta, Western Interior (abstr) LPI contribution: in-Abstracts for the 54th annual meeting of the Meteoritical Society, 766, 1991, p. 28.
*Boon, J.D. and Albritton, C.C., 1937, Meteorite scars in ancient rocks: Field and Lab, v.5, p 53-64.
*Bunch, T.E. & Cohen, A.J., 1967, Shock deformation of quartz from two meteoritie craters: Geol. Soc. American Bull., v.75, p. 1263. 1266.
*Bunch, T.E. & Cohen, A.J., 1963, Coesite and shocked quartz from Holleford crater, Ontario, Canada: Science, v. 142, n. , p. 379-381.
*Bunch, T.E., 1968, Some characeteristics of selected minerals of craters: in- French, B.M. and Short, N,M,. eds, Shock Metamorphism of Natural Materials: Baltimore, Mono Book Corp., p. 413-432.
*Bunch, T.E., 1964, A petrographic description of some shock features in quartz from meteorite craters (unpublished).
*Carrigy, M., 1968, Evidence of shock metamorphism in rocks from the Steen River structure, Alberta: in-Shock metamorphism of natural materials, (B.M. French and N. Short, eds.) p. 367-378, Mono, Baltimore.
*Carter, N.L., Officer, C.B., Chesner, C.A., and Rose, W.I., 1986, Dynamic deformation of volcanic ejecta from the Toba caldera: Possible relevance to Cretaceous/Tertiary boundary phenomena: Geology, v. 14, p. 380-383.
*Carter, N.L., Officer, C.B., and Drakes, C.L., 1988, Dynamic deformation of quartz and feldspar: Clues to causes of some natural crises: tectonophysics.
*Carter, N.L., 1988, Naturally shocked silicates: Diagnostic microstructures (abs): EOS (AGU Trans), v. 16, p. 301.
*Carter, N.L., 1963, Experimental deformation and recrystallization of quartz: Ph.D. thesis, University of California, Los Angeles, Los Angeles, California.
*Carter, N.L., Christie, J.M., and Griggs, D.T., 1964, Experimental deformation and recrystallization of quartz: Jour. Geology, v. 72, p. 687-733.
*Carter, N.L., 1965, Basal quartz deformation lamellae - a criterion for recognition of impactites: Am. Jour. Sci., v. 263, Nov. 1965, p. 786-806.
*Carter, N.L., 1968, Meteorite impact and deformation of quartz: Science, v. 160, n. ?, p. 526-528.
*Carter, N.L., 1968, Dynamic deformation of quartz: in- B.M. French and N.M. Short (editors), shock metamorphism of Natural Materials: Mono Book Corp., Baltimore, MD, 453-474.
*Carter, N.L., 1965, Basal quartz deformation lamellae-a criterion for recognition of impactites: American Journal of Science, v. 263, p. 786-806.
*Chao, E.C.T., 1967, Shock effects of certain rock-forming minerals: Science, v. 156, p. 192-202.
*Chao, E.C.T., 1968, Pressure and temperature histories of impact metamorphorised rocks based on petrographic observations: in- Shock Metamorphism of Natural Materials, ed. by B.M. French and N.M. Short, p. 135, Mono, Baltimore, MD.
*Chao, E.C.T., 1968, Pressure and temperature histories of impact metamorphosed rocks-based on petrographic observations: Nevers, Hahrb. Mineral. Alhandl. v. 108, p. 209.
*Christie, J.M., Griggs, D.T., and Carter, N.L., 1964, Experimental evidence of basal slip in quartz: Jour. Geol., v. 72, p. 734-756.
*Christie, J.M., Heard, H.C. & La Mori, P. N., 1964, Experimental deformation of quartz single crystals at 27 to 30 kilobars confining pressure and 24 degree C: Amer. Jour. Science, v. 262, p. 26-55
*Cortillot, V., 1988, An internal cause for the Cretaceous-Tertiary boundary events (abs): EOS (AGU Trans.), v. 16, p. 301.
*Currie, K.L., 1970, New Canadian crystoexplosion crater at Lake St. Martin, Manitoba: Nature, v. 226, p. 839-841.
*Currie, K.L., 1967, Shock metamorphism in the Carswell circular structure, Saskatchewan, Canada: Nature, p. 56-57, Jan. 7, 1967.
*Currie, K.L., 1964, On the origin of some "Recent" craters on the Canadian Shield: Meteoritics, v. 2, n. 2, p. 93-110
*Dence, M. R., 1968, Shock zoning at Canadian craters: pretrography and structural implications: in- Shock Metamorphism of Natural Materials, (editors, B.M. French, and N. M. Short) p. 169-184.
*Dence, M.R.. 1964, a comparative structural and petrographic study of probable Canadian meteorite craters: Meteoritics, v. 2, n. 3, p. 249-270
*Dence, M.R., von Engelhardt, W., Walter, L.S., and Plant, A.G., 1970, Spheroids in impact glass from West Clearwater Lake Crater, Quebec (abstr): EOS (Trans), v. 51, n. 4, p. 342.
*De Carli, P.S., 1968, Observations of the effects of explosion shock on crystalline solids: in- French, B.M. and Short, N.M. eds., Shock Metamorphism of natural materials: Baltimore, Mono Book Corp., p.129-134.
*de Silva, S., Wolfe, J.A., and Sharpton, V.L., 1990, Explosive volcanism and associated pressures- implications for models of endogenetically shocked quartz: in- Sharpton, V.L., and Ward, P.D., eds., Global catastrophes in Earth history, GSA Spec. Paper 247, p. 139-144.
*Dietz, R.S., 1966, Shatter cones at the Middlesboro structure, Kentucky: Meteoritics, v. 3, n. 1, May 1966, P. 27-29
*Dorobek, S.L., and Watkinson, A.J., 1988, Cathodluminescence petrography of microstructural fabrics in deformed limestones: Journal of Structural: Geology, v. 10, p. 305-309
*Dutch, S.I., 1976, The Sudbury meteor impact structure: resolution of a problem in deformational chronology (abstr): EOS (Trans AGU), v. 57, n. 4, p. 275.
*Englehardt, W. von, & Stoffler, D., 1968, Stages of shock metamorphism in the crystalline rocks of the Ries Basin, Germany: in- Shock metamorphism of natural materials (B.M. French and N.M. Short, eds.), p. 159-168, Mono, Baltimore.
*French, B.M., and Short, M.M., eds., 1968, Shock metamorphism of natural materials: Baltimore, Mono, 644 p.
*French, B.M., Underwood, J.R., and Fisk, E.P., 1974, Shock-metamorphic features at two meteorite impact structures, southeastern Libya: Bull. Geol. Soc. Amer., v. 85, p. 1425-1428.
*Gibbons, R.V., Horz, J., Thompson, T.D., and Ahrens, T.J., 1975, Controlled shock experiments of lunar analogues: in- Lunar Science, v. V1, p. 284-286, Lunar Science Institute, Houston, Texas.
*Gibbons, R.V., Kieffer, S.W., Schad, R.B., Horz, F., and Thompson, T.D., 1975, experimental calibration of shock metamorphism of basalt: in- Conf. on Origin of Mare Basalts, Lunar Science, Institute, Houston, TX. p. 44-48.
*Glikson, A.Y., 1976, Earliest Precambrian ultramafic-mafic volcanic rocks: ancient oceanic crust or relic terrestrial maria?: Geology, v. 4, p. 201-205.
*Gosten, V.A., Haines, P.W., Jenkins, R.J.F., Compston, W., and Williams, I.S., 1986, Impact ejecta horizon within Late Precambrian shales, Adelaide Geosyncline, South Australia: Science, v.233, n. 4760, p. 198-203, July 11, 1986.
*Gold, D.P., and Tuttle, O.F., 1966, Program, Conference on Shock Metamorphism of Natural Materials,: Greenbelt, MD, (April 16, 1966).
*Grieve, R.A.F., 1980, Impact bombardment and its role in proto-continental growth on the early earth: Precambrian Res., v. 10, p. 217-247.
*Grieve, R.A.F., Codere, J.M., Robertson, P.B., and Alexopoulos, J., 1990, Microscopic planar deformation features in quartz of the Vredefort structure-anomalous but still suggestive of an impact origin: Tectonophysics, v.171, v.283, p. 241-262.
*Grieve, R.A.F., Langenhorst, F., and Stoffler, D., 1996, Shock metamorphism of quartz in nature and experiment, II- significance in geoscience: Meteoritics and Planetary Science, v.31, p. 6-35.
*Grieve, R.A.F., and Robertson, P.B., 1979, The terrestrial cratering record: Icarus, v. 38, p. 212-229.
*Griggs, D.T., and Blacic, J.D., 1964, The strength of quartz in the ductile regime (abs): EOS (Trans. AGU), v. 45, p. 102-103.
*Hartung, J.B., 1968, Application of the potassium-argon method to the dating of shocked rocks: Ph.D. thesis, Rice University, Houston, TX.
*Hartung, J.B., Dence, M.R., and Adams, J.A.S., 1971, Potassium-argon dating of shock-metamorphosed rocks from the Brent impact crater, Ontario, Canada: Jour. Geophys. Res., v. 76, n. 23, p. 5437-5448.
*Hobbs, B.E., Blacic, J.D., and Griggs, D.T., 1966, Planar deformation features in water-weakened quartz (abstr.), EOS (Trans AGU), v. 47, n. 3, p. 494.
*Hobbs, B.E., 1966, Stress relaxation in single crystals of quartz (abstr): EOS (Trans AGU), v. 47, n. 3, p. 493-494.
*Horz, F., 1968, Statistical measurements of deformation structures and refractive indices in experimentally shock loaded quartz: in- Shock Metamorphism of Natural Materials: (B.M. French and N.M. Short, Eds.) p. 243-254, Mono, Baltimore.
*Horz, F. and Quaide, W.L., 1973, Debze-Scherrer investigation of experimentally shocked silicates: The Moon, v. 6, p. 45-82.
*Horz, F., 1968, Statistical measurement of deformation structures and refractive indices in experimentally shock loaded quartz: in- French, B.M. and Short, N.M., eds., Shock metamorphism of natural materials: Baltimore, Mono Book Corporation, p. 243-254.
*Huffman, A.R., Brown, J.M., Carter, N.L., and Reimold, W.U., 1993, The microstructure response of quartz and feldspar under shock loading at variable temperatures: Jour. Geophys. Res., v.98, p. 22,171-22,197.
*Huffman, A.R., Crockett, J.H. and Carter N.L., 1988, Iridium, shocked minerals and trace elements across the Cretaceous/Tertiary boundary at Maud Rise, Weddell Sea and Walvis Ridge, South Atlantic Ocean (abs.): International Conference on Global Catastrophes in Earth History, Snowbird, Utah, Oct. 1988.
*Huffman, A.R., and Reimold, W.U., 1996, Experimental constraints on shock-induced microstructures in naturally deformed silicates: Tectonophysics, v.256, p. 165-217.
*Izett, G.A., 1987, The Cretaceous-Tertiary (K-T) boundary interval, Raton Basin, Colorado and New Mexico, and its content of shock-metamorphosed minerals: Implications concerning the K-T boundary impact-extinction theory: USGA Open-File Report 87-606, 125 pages.
*Jahn, B., Floran, R.J., and Simonds, C.H., 1978, Rb-Sr. isochron age of the Manicouagan melt sheet, Quebec, Canada: Jour. of Geophys. Research, v. 83, n. B6, p. 2799-2803.
*Jeanloz, R., Ahrens, T.J., Lally, J.S., Nord, S.L., Jr., Christie, J.M., and Hauer, A.H., 1977, Shock produced olivine glass: First observation: Science, v. 1977, p. 457-459
*Kunk, M.J., 1990, 40Ar/39Ar age spectra of shocked microcline from the central uplift of the Manson impact structure support, a link with the K-T boundary (abstr): Abstracts - Geol. Soc. of Australia: in- Seventh International Conference on Geochronology: Cosmochronology and isotope geology (Wm. Compston), 275, 1990, p. 57.
*Lambert, P., 1977, The Rochechouart crater shock zoning study: Earth Planet, Sci. Letter, v.35, p. 258-268.
*Lilly, P.A., 1981, Shock metamorphism in the Vredefort Collar: Evidence for internal shock sources: Journal of Geophysical Research, v. 85, p. 10689-10700.
*Lyons, J.B., Officer, C.B., Borella, P.E., and Lahodynsky, R., 1993, Planar lamellar substructures in quartz: Earth and Planetary Science Letters, v.119, p. 4310440.
*Manconi, J.W., and Mc Dougall, D.J., 1970, Thermal activation energy of shocked and strained quartz: American Mineral., v. 55, p. 398-402
*Mc Dougall, D.J., 1970, Natural thermoluminescence of calcareous rocks from the Charlevoix (Mabaie) structure: Meteoritics, v. 5, n. 2, p. 75-83, June 30, 1970.
*Mc Intyre, D.B., 1962, Impact metamorphism at Clearwater Lake, Quebec (abstr): Jour. Geophys. Res., v. 67, n. 4, p. 1647.
*Millman, P. M., 1971, The space scars of Earth: Nature, v. 232, p. 161-164.
*Milton, D.J., and De Carli, P.S., 1963, Maskelynite: formation by explosive shock: Science, b. 140, p. 670 -.
*Muller, W.F., and De Fourneaux, M., 1968, Deformationsstrukturen in Quartz al Indikator fur Stosswellen- eine experimentale unitersachung an Quarzeinkristallen: Z. Geophys., v. 34, p. 483.
*Offield, T.W., and Pohn, H.A., 1971, Style and sequence of deformation of the Decaturville, Missouri impact structure: Meteoritics, v. 6, n. 4. p. 296-297.
*O'Keefe, J.D., and Ahrens, T.J., 1975, Shock effects from a large impact on the Moon: Proc. 6th Lunar Sci. Conf., p. 2831-2844.
*Onorato, P.I.K., Uhlmann, D.R., and Simonds, C.H., 1978, The thermal history of the Manicouagan impact melt sheet, Quebec: Jour. of Geophys. Res, v. 83, n. B6, p. 2789-2798.
*Ostertag, R., 1978, Continuous deposits of the Ries Craters, Germany: Meteoritics, v. 13, n. 4, p. 594-595.
*Owen, M.R. and Anders, M.H., 1988, Evidence from cathodluminescence for non-volcanic origin of shocked quartz at the Cretaceous Tertiary boundary: Nature, v. 334, p. 156-148.
*Papunen, H., 1969, Possible impact metamorphic textures in the erratics of the Lake Saaksjarvic area in southwestern Finland: Bull, Geol. Soc., Finland, v.41, p.151-155.
*Reimold, W.V., 1986, Textures of experimentally shocked (5.1-35 GPa) Witwatersrand quartzite: Lunar and Planetary Science, v. 17, p. 703-704.
*Reimold, W.U., 1990, The controversial microdeformations in quartz from the Vredefort structure: South African Journal of Geology, v.93, p. 645-663.
*Reimold, W.V., and Horz, F., 1986, Experimental shock metamorphism of Witwatersrand quartzite: Johannesburg, International Earth Science Congress, p. 53-57.
*Reimold, W.V., 1988, Shock experiments with preheated Witwatersrand quartzite and the Vredefort microdeformation controversy: Houston, Texas, 19th Lunar and Planetary Scinece Conference Proceedings, p. 970-971.
*Reimold, W.V., and Stoffler, D., 1978, Experimental shock metamorphism of dunitic rocks: in- Lunar and Planetary Institute, Houston, Texas.
*Robertson, P.B., and Grieve, R.A.F., 1977, Shock attenuation at terrestrial impact structures: in- D.J.Roddy, R.O. Pepin and R.B. Merrill (eds.) Impact and Explosion Cratering. Pergamon, New York, 1977, p. 687-702.
*Robertson, P.B., 1975, Zones of shock metamorphism at the Charlevoix impact structure, Quebec: Bull. Geol. Assoc. Amer., v. 86, p. 1630-1638.
*Robertson, P.B., 1975, Zones of shock metamorphism at the Charlevoix impact structure, Quebec: GSA Bull., v. 86, p. 1630-1638.
*Roddy, D.J., 1966, Carbonate deformation at a probable impact crater at Flynn Creek, Tennessee (abstr): EOS (Trans. AGU), v. 47, n. 3, p. 493-494.
*Rondot, J., 1971, Impactite of the Charlevoix structure, Quebec, Canada: Jour. of Geophys. Research, v. 76, n. 23, p. 5414-5423.
*Roy, D.W., 1968, Refraction of a shock wave passing through a cross folded crystalline basement: Meteoritics, v. 4, n. 4, p. 292-293.
*Sage, R.P., 1978, Diatremes and shock features in Precambrian rocks at the Slate Islands, northeastern Lake Superior: GSA Bull., v. 89, p. 1529-1540.
*Short, N.M., and Bunch, T.E., 1968, A worldwide inventory of features characteristics of rocks associated with presumed meteorite impact craters: in- French, B.M. and Short, N.M., eds., Shock metamorphism of natural materials: Baltimore, Mono Book Corp., p. 255-266.
*Schaal R.B. and Horz, F., 1977, Shock metamorphism of lunar and terrestrial basalts: Proc. 8th Lunar Sci., Conf., p. 1677-1730.
*Short, N.M. and Bunch, T.E., 1968, A worldwide inventory of features characteristic of rocks associated with presumed meteorite impact craters: in- Shock Metamorphism of Natural Materials, B.M. French and N.M. Short, eds. Baltimore: Mono Book Corp., p. 255-266.
*Shrock, R.R., and Malott, C.A., 1933, The Kentland area of disturbed Ordovician rocks in northwestern Indiana: Jour. Geol., v. 41, n. 4, p. 337-370.
*Smith, T.A., 1971, Geophysical study of the Manson impact structure (abstr.): EOS (Trans AGU), v. 52, n. 4, p. 264-265.
*Stoffler, D., 1972, Deformation and transformation of rock-forming minerals by natural and experimental shock processes, I. Behavior of mineral under shock compression: Fortschritte der Mineralogie, v. 49, p. 50-113.
*Stoffler, D., 1974, Deformation and transformation of rock-forming minerals by natural and experimental shock processes II: Physical properties of shocked minerals: Fortschr. Mineral, v. 51, p. 256-289.
*Stoffler, D., and Hornemann, V., 1972, Quartz and feldspar glasses produced by natural and eperimental shock: Meteoritics, v. 7, p. 371-394.
*Stoffler, D., Wedekind, J.A., Polkowski, G., and Gault, D.E., 1972, Experimental hypervelocity impact craters in quartz sand distribution and shock metamorphism of ejected mass (abstr): EOS (Trans AGU), v. 53, n. 11, p. 1036.
*Tamminen, J., and Wickman, F.E., 1980, Shock effects in pegmatitic quartz from the Siljan ring structure, central Sweden: Geologislca Foreningens i, Stockholm Forhandlingar, v. 102, p. 275-278.
*Thomas, M.D., Innes, M.J.S., Dence, M.R., Grieve, R.A.F., and Robertson, P.B. 1977, Gow Lake, Saskatchewan: evidence for an origin by meteoritic impact: Meteoritics, v. 12, n. 3, p. 370-371.
*Wacherler, J., 1961, Shock-wave compression of quartz: Jour. Appl. Physics, v. 33, p. 922-937.
*Wilshire, H.G., and Howard, K.A., 1968, Structural pattern in central uplifts of cryptoexplosion structures as typified by Sierra Madre: Science, v. 162, p. 258-261.
*Wolfe, S.H., and Horz, F., 1970, Shock effects in saprolite: Amer. Mineral, v. 55, p. 1313.
*Wolfe, S.H., 1971, Potassium-argon ages of the Manicouagan-Mushalagan Lakes structure: Jour. of Geophys. Res., v. 61, n. 23, p. 5424-5436.
*Xiande, X., and Chaos, E.C., 1984, Studies on the application of Debze-Scherrer technique of quartz: Acta Mineralogica Sinica, v. 1984, n. 4, 1984, p. 311-318.