Detrital remanent magnetization in haematite-bearing Neoproterozoic Puga cap dolostone, Amazon craton: a rock magnetic and SEM study
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Aïssaoui, 1990, Magnetostratigraphic dating of shallow-water carbonates from Mururoa atoll, French Polynesia: implications for global eustasy, Earth planet. Sci. Lett., 97, 102, 10.1016/0012-821X(90)90102-4
Belkaaloul, 1997, Nature and origin of magnetic minerals within the Middle Jurassic shallow-water carbonate rocks of the Paris Basin, France: implications for magnetostratigraphic dating, Geophys. J. Int., 130, 411, 10.1111/j.1365-246X.1997.tb05657.x
Channell, 1994, Comparison of magnetic hysteresis parameters of unremagnetized and remagnetized limestones, J. geophys. Res., 99, 4613, 10.1029/93JB02578
Channell, 1982, Timing of diagenetic hematite growth in red pelagic limestones from Gubbio (Italy), Earth planet. Sci. Lett., 58, 189, 10.1016/0012-821X(82)90193-5
Cioppa, 2002, Evaluating the timing of hydrocarbon generation in the Devonian Duvernay Formation: paleomagnetic, rock magnetic and geochemical evidence, Marine and Petrololeum Geology, 19, 275, 10.1016/S0264-8172(02)00017-X
Evans, 2000, Stratigraphic, geochronological and paleomagnetic constraints upon the Neoproterozoic paradox, Am. J. Sci., 300, 347, 10.2475/ajs.300.5.347
Jackson, 1992, The rock magnetic fingerprint of chemical remagnetization in midcontinental paleozoic carbonates, Geophys. Res. Lett., 19, 781, 10.1029/92GL00832
Jackson, 1993, Rock magnetism of remagnetized paleozoic carbonates: low-temperature behavior and susceptibility characteristics, J. geophys. Res., 98, 6217, 10.1029/92JB01319
Kletetschka, 2000, Hematite vs. magnetite as the signature for planetary magnetic anomalies?, Phys. Earth Planet. Int., 119, 259, 10.1016/S0031-9201(00)00141-2
Kruiver, 2001, Quantification of magnetic coercivity components by the analysis of acquisition curves of isothermal remanent magnetization, Earth planet. Sci. Lett., 189, 269, 10.1016/S0012-821X(01)00367-3
Li, 2000, New paleomagnetic results from the ‘cap dolomite’ of the Neoproterozoic Walsh Tillite, northwestern Australia, Precambrian Res., 100, 359, 10.1016/S0301-9268(99)00081-9
Lowrie, 1990, Identification of ferromagnetic minerals in a rock by coercivity and unblocking temperature properties, Geophys. Res. Lett., 17, 159, 10.1029/GL017i002p00159
Lowrie, 1982, Magnetic properties of limestones, Rev. Geophys. Space Phys., 20, 171, 10.1029/RG020i002p00171
McCabe, 1989, The occurrence and origin of late paleozoic remagnetization in the sedimentary rocks if north America, Rev. Geophys., 27, 471, 10.1029/RG027i004p00471
McCabe, 1989, Regional patterns of magnetite authigenesis in the Appalachian Basin: Implications for the Mechanism of Late Paleozoic remagnetization, J. Geophys. Res., 94, 10429, 10.1029/JB094iB08p10429
McFadden, 1990, Classification of the reversal test in paleomagnetism, Geophys. J. Int., 103, 725, 10.1111/j.1365-246X.1990.tb05683.x
McNeill, 1993, Early dolomitization of platform carbonates and the preservation of magnetic polarity, J. geophys. Res., 98, 7977, 10.1029/93JB00353
Meert, 2001, Assembly and break-up of Rodinia: introduction to the special volume, Precambrian Res., 110, 1, 10.1016/S0301-9268(01)00177-2
Nogueira, 2003, Soft-sediment deformation at the base of the Neoproterozoic Puga cap carbonate (southwestern Amazon Craton, Brazil): confirmation of rapid icehouse-greenhouse transition in snowball earth, Geology, 31, 613, 10.1130/0091-7613(2003)031<0613:SDATBO>2.0.CO;2
Robertson, 1994, Discrimination of remanence-carrying minerals in mixtures, using isothermal remanent magnetisation acquisition curves, Phys. Earth planet. Int., 82, 223, 10.1016/0031-9201(94)90074-4
Suk, 1990, Scanning and transmission electron microscope observations of magnetite and others iron phases in Ordovician carbonates from east Tenessee, J. geophys. Res., 95, 12327, 10.1029/JB095iB08p12327
Suk, 1992, SEM/STEM observation of magnetic minerals in presumably Paleozoic carbonates from Indiana and Alabama, Tectonophys., 215, 255, 10.1016/0040-1951(92)90356-B
Sun, 1994, Scanning electron microscopy and rock magnetic studies of magnetic carriers in remagnetized early Paleozoic carbonates from Missouri, J. geophys. Res., 99, 2935, 10.1029/93JB02761
Tarduno, 1994, A primary magnetization fingerprint from the Cretaceous Laytonville limestones: further evidence for rapid oceanic plate velocities, J. geophys. Res., 99, 21691, 10.1029/94JB01939
Trindade, 2003, Low-latitude and multiple geomagnetic reversals in the Neoproterozoic Puga cap carbonates, TerraNova, 15, 441
Van Velzen, 1992, A method to study alterations of magnetic minerals during termal demagnetization applied to a fine-grained marine marl (Trubi formation, Sicily), Geophys. J. Int., 110, 70
Weil, 2004, Paleomagnetism of the Neoproterozoic Chuar Group, Grand Canyon Supergroup, Arizona: implications for Laurentia's Neoproterozoic APWP and Rodinia break-up, Precambrian Res., 129, 71, 10.1016/j.precamres.2003.09.016