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  • ISSN: 1443-2471
  • E-ISSN: 1836-084X
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2020-03-03
2026-01-19
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References

  1. Brodie, R.C., GA-AEM Source Code Repository, 2016, https://github.com/GeoscienceAustralia/gaaem
  2. Ley-Cooper, A. Y., R. C.Brodie, and M.Richardson 2019 “AusAEM: Australia’s Airborne Electromagnetic Continental-Scale Acquisition Program”. Exploration Geophysics, 51, 1-10, (doi.10.1080/08123985.2019.1694393).
    [Google Scholar]
  3. Foss C., G. Gouthas, A. Fabris, M. Werner, L. Katona, M. Hutchens, and G. Reed 2018 “Gawler Craton Airborne Geophysical Survey Region 3B, Torrens – Enhanced Geophysical Imagery and Magnetic Source Depth Models”, Report Book 2018/00038. Department for Energy and Mining, South Australia, Adelaide.
  4. Clifton, R. 2016 “Forward Modelling of Spectral Depths Using 3D Fourier Convolution”. Exploration Geophysics, http://doi.org/10.1071/EG15092
    [Google Scholar]
  5. FitzGerald, D. 2013 Full Tensor Magnetic Gradiometry. 13th SAGA, 2013, Kruger Park
  6. Holstein, H., D.FitzGerald, Anastasiades C. 2009 Gravimetric anomalies of uniform thin polygonal sheets. 11th SAGA Conference, Swaziland.
  7. Horsfall, K.D. 1997 “Airborne magnetic and gamma-ray data acquisition”. AGSO Journal of Australian Geology and Geophysics,17 (2).
    [Google Scholar]
  8. Minty, B. R. S. 2011 “Airborne Geophysical Mapping of the Australian Continent”. Geophysics, 76 (5).
    [Google Scholar]
  9. Reid, A. B. 1980 “Aeromagnetic Survey Design”. Geophysics, 45 (5).
    [Google Scholar]
  10. David A. Clark 1999 Magnetic petrology of igneous intrusions: implications for exploration and magnetic interpretation, Exploration Geophysics, 30:1-2, 5-26, doi: 10.1071/EG999005
    https://doi.org/10.1071/EG999005 [Google Scholar]
  11. Ague, J. J., and G. H.Brimhall 1988 Regional variations in bulk chemistry, mineralogy, and the compositions of mafic and accessory minerals in the batholiths of California. Geological Society of America Bulletin100: 891–911.
    [Google Scholar]
  12. Bateman, P. C., and B. W.Chappell 1979 Crystallization, fractionation, and solidification of the Tuolumne Intrusive Series, Yosemite National Park, California. Geological Society of America Jlulletin90: 465–482.
    [Google Scholar]
  13. Blevin, P. L. 1994 Magnetic susceptibility of the Lachlan Fold Belt and New England Batholith granites: AMIRA Project P147B Final Report (unpublished).
  14. Blevin, P. L. 1996 Using magnetic susceptibility meters to interpret the oxidation state of granitic rocks: 13th Australian Geological Convention. Geological Society of Australia, Abstracts41: 40.
    [Google Scholar]
  15. Blevin, P. L., and B. W.Chappell 1992 The role of magma sources, oxidation states and fractionation in determining the granite metallogeny of eastern Australia. Royal Society of Edinburgh, Transactions, Earth Sciences83: 305–316.
    [Google Scholar]
  16. Blevin, P. L., and B. W.Chappell 1995 Chemistry, origin and evolution of mineralized granites in the Lachlan Fold Belt, Australia: the metallogeny of I- and S-type granites. Economic Geology90: 1604–1619.
    [Google Scholar]
  17. Bowden, P., R. A.Batchelor, B. W.Chappell, J.Didier, and J.Lameyre 1984 Petrological, geochemical and source criteria for the classification of granitic rocks: a discussion. Physics of the Earth and Planetary Interiors35: 1–11.
    [Google Scholar]
  18. Buddington, A. F., and D. H.Lindlsey 1964 Iron-titanium oxide minerals and synthetic equivalents. Journal of Petrology5: 310–357.
    [Google Scholar]
  19. Cameron, E. M., and W. J.Carrigan 1987 Oxygen fugacity of Archean felsic magmas: their relationship to gold mineralization. Geological Survey of Canada, Paper87-lA: 281–298.
    [Google Scholar]
  20. Candela, P. A. 1986 The evolution of aqueous vapor from silicate melts: effect on oxygen fugacity. Geochimica et Cosmochimica Acta50: 1205–1211.
    [Google Scholar]
  21. Chappell, B. W., and W. E.Stephens 1988 Origin of infracrustal (I-type) granite magmas. Royal Society of Edinburgh, Transactions, Earth Sciences79: 71–86.
    [Google Scholar]
  22. Chappell, B. W., and A. J. R.White 1974 Two contrasting granite types. Pacific Geology8: 173–174.
    [Google Scholar]
  23. Chappell, B. W., A. J. R.White, and R.Hine 1988 Granite provinces and basement terranes in the Lachlan Fold Belt, southeastern Australia. Australian Journal of Earth Sciences35: 505–521.
    [Google Scholar]
  24. Clark, D. A. 1997 Magnetic petrophysics and magnetic petrology: aids to geological interpretation of magnetic surveys. AGSO Journal of Australian Geology and Geophysics17: 83–103.
    [Google Scholar]
  25. Clark, A. H., and O. N.Arancibia 1996 The occurrence, paragenesis and implications of magnetite-rich alteration-mineralization in calc-alkaline porphyry copper deposits. In Giant ore deposits - II, controls on the scale of orogenic magmatic-hydrothermal mineralization, ed. A.H.Clark, 583–640. Second Giant Ore Deposits Workshop.
    [Google Scholar]
  26. Clark, D. A., and D. W.Emerson 1991 Notes on rock magnetization characteristics in applied geophysical studies. Exploration Geophysics22: 547–555.
    [Google Scholar]
  27. Clark, D. A., D. H.French, M. A.Lackie, and P. W.Schmidt 1992a Rock magnetism and magnetic petrology applied to geological interpretation of magnetic surveys, CSIRO Division of Exploration Geoscience, Restricted Report 303R (unpublished).
  28. Clark, D. A., D. H.French, M. A.Lackie, and P. W.Schmidt 1992b Magnetic petrology: application of integrated rock magnetic and petrological techniques to geological interpretation of magnetic surveys. Exploration Geophysics23: 65–68.
    [Google Scholar]
  29. Collins, S. 1987 The geophysics of the Red Dome gold mine and surrounding areas. Exploration Geophysics18: 19–20.
    [Google Scholar]
  30. Criss, R. E., and D. E.Champion 1984 Magnetic properties of granitic rocks from the southern half of the Idaho Batholith: influences of hydrothermal alteration and implications for aeromagnetic interpretation. Journal of Geophysical Research89: 7061–7076.
    [Google Scholar]
  31. Czamanske, G. K., S.Ishihara, and S. A.Atkin 1981 Chemistry of rock-forming minerals of the Cretaceous-Paleocene batholith in southwestern Japan and implications for magma genesis. Journal of Geophysical Research86: 10,431–10,469.
    [Google Scholar]
  32. Dodge, F. C. W. 1972 Variation of ferrous-ferric ratios in the central Sierra Nevada Batholith, U.S.A. 24th International Geological Congress, Proceedings, Section10: 12–19.
    [Google Scholar]
  33. Dunlop, D. J., and O.Ozdemir 1997Rock magnetism: fundamentals and frontiers. Cambridge University Press.
  34. Einaudi, M. T., L. D.Meinert, and R. J.Newberry 1981 Skarn deposits. Economic Geology, 75th Anniversary Volume, 317–391.
    [Google Scholar]
  35. Fershtater, G. B., and V. A.Chashchukhina 1979 Granitoid mineral parageneses in various ferrofacies. Geochemistry International3: 48–61.
    [Google Scholar]
  36. Fershtater, G. B., N. S.Borodina, and V. A.Chashchukhina 1978 Granitoid ferrofacies. Geochemistry International2: 91–102.
    [Google Scholar]
  37. Frost, B. R. 1991a Magnetic petrology: factors that control the occurrence of magnetite in crustal rocks, in Lindsley, D.H., Ed. Oxide minerals: petrologic and magnetic significance: Reviews in Mineralogy25: 489–509.
    [Google Scholar]
  38. Frost, B. R. 1991b Introduction to oxidation fugacity and its petrologic importance, in Lindsley, D.H., Ed. Oxide minerals: petrologic and magnetic significance: Reviews in Mineralogy25: 1–9.
    [Google Scholar]
  39. Frost, B. R., and D. H.Lindsley 1991 Occurrence of iron-titanium oxides in igneous rocks, in Lindsley, D.H., Ed. Oxide minerals: petrologic and magnetic significance: Reviews in Mineralogy25: 433–468.
    [Google Scholar]
  40. Grant, F. S. 1985 Aeromagnetics, geology and ore environments, I. Magnetite in igneous, sedimentary and metamorphic rocks: an overview. Geoexploration23: 303–333.
    [Google Scholar]
  41. Haggerty, S. E. 1976 Opaque mineral oxides in terrestrial igneous rocks, in Oxide minerals. Mineralogical Society of America, Short Course Notes3: Hg IOl–Hg300.
    [Google Scholar]
  42. Hattori, K. 1987 Magnetic felsic intrusions associated with Canadian Archean gold deposits. Geology15: 1107–1111.
    [Google Scholar]
  43. Hine, R., I. S.Williams, B. W.Chappell, and A. J. R.White 1978 Contrasts between I- and S-type granitoids of the Kosciusko Batholith. Journal of the Geological Society of Australia25: 219–234.
    [Google Scholar]
  44. Hollister, V. F. 1975 An appraisal of the nature and source of porphyry copper deposits. Minerals Science and Engineering7: 225–233.
    [Google Scholar]
  45. Hughes, C. J. 1982Igneous petrology. Elsevier Scientific Publishing Company.
  46. Hyndman, D. W. 1972Petrology of igneous and metamorphic rocks. McGraw Hill.
  47. Ishihara, S. 1977 The magnetite-series and ilmenite-series granitic rocks. Mining Geology27: 293–305.
    [Google Scholar]
  48. Ishihara, S. 1981 The granitoid series and mineralization: Economic Geology. 75th Anniversary Volume, 458–484.
    [Google Scholar]
  49. Ishihara, S., S.Terashima, and K.Tsukimura 1987 Spatial distribution of magnetic susceptibility and ore elements, and the cause of local reduction on magnetite series granitoids and related ore deposits at Chichibu, central Japan. Mining Geology37: 15–28.
    [Google Scholar]
  50. Khitrunov, A. T. 1985 Oxidation-reduction environment of formation of granitoid rocks with different ore concentrations. Doklady Earth Science Sections280: 201–204.
    [Google Scholar]
  51. Kress, V. C., and I. S.Carmichael 1991 The compressibility of silicate liquids containing Fe2O3 and the effect of composition, temperature, oxygen fugacity and pressure on their redox states. Contributions to Mineralogy and Petrology108: 82–92.
    [Google Scholar]
  52. Kwak, T. A. P., and A. J. R.White 1982 Contrasting W-Mo-Cu and W-Sn-F skarn types and related granitoids. Mining Geology32: 339–351.
    [Google Scholar]
  53. Le Bas, M. J., and A. L.Streckeisen 1991 The JUGS systematics of igneous rocks. Journal of the Geological Society148: 825–833.
    [Google Scholar]
  54. Lowell, J. D., and J.Guilbert 1970 Lateral and vertical zoning in porphyry ore deposits. Economic Geology65: 373–408.
    [Google Scholar]
  55. Maniar, P. O., and P. M.Piccoli 1989 Tectonic discrimination of granitoids. Geological Society of America Bulletin101: 635–643.
    [Google Scholar]
  56. McIntyre, J. I. 1980 Geological significance of magnetic patterns related to magnetite in sediments and metasediments - a review. Bulletin of the Australian Society of Exploration Geophysicists11: 19–33.
    [Google Scholar]
  57. Mutton, A. J., and R. D.Shaw 1979 Physical property measurements as an aid to magnetic interpretation in basement terrains. Bulletin of the Australian Society of Exploration Geophysicists10: 79–91.
    [Google Scholar]
  58. Peacock, M. A. 1931 Classification of igneous rock series. Journal of Geology39: 54–67.
    [Google Scholar]
  59. Pecherskiy, D. M. 1965 Statistical analysis of the reasons for the varying magnetization of the granitoids of the Verkhoyansk-Chukotka fold region and the Okhotsk-Chukotka volcanic belt. International Geology Review7: 1963–1976.
    [Google Scholar]
  60. Pitcher, W. S. 1983 Granite-type and tectonic environment. In Mountain building processes, ed. K.Hsu, 19–40. Academic Press.
    [Google Scholar]
  61. Puranen, R. 1989 Susceptibilities, iron and magnetite content of Precambrian rocks in Finland, Geological Survey of Finland, Report of Investigation 90.
  62. Sexton, M. A., G. W.Morrison, T. O. H.Orr, A. M.Foley, and P. J.Wormald 1995 The Mt Leyshon magnetic anomaly. Exploration Geophysics26: 84–91.
    [Google Scholar]
  63. Sillitoe, R. H. 1979 Some thoughts on gold-rich porphyry copper deposits. Mineralium Deposita14: 161–1744.
    [Google Scholar]
  64. Speer, J. A. 1981 The nature and magnetic expression of isograds in the contact aureole of the Liberty Hill pluton, South Carolina. Geological Society of America Bulletin, Part I, 92, 603-609 and Part II92: 1262–1358.
    [Google Scholar]
  65. Studemeister, P. A. 1983 The redox state of iron: a powerful indicator of hydrothermal alteration. Geoscience Canada10: 189–194.
    [Google Scholar]
  66. Takagi, T., and K.Tsukimura 1997 Genesis of oxidized- and reduced-type granites. Economic Geology92: 81–86.
    [Google Scholar]
  67. Wall, V. J., and P. A.Gow 1996 Some copper-gold ore-forming systems: iron(ic) connections. In Giant ore deposits - II, controls on the scale of orogenic magmatic-hydrothermal mineralization, ed. A.H.Clark, 557–582. Second Giant Ore Deposits Workshop.
    [Google Scholar]
  68. Washington, H. S., and L. H.Adams 1951 The chemical and petrological nature of the Earth's crust. in Gutenberg, B., Ed. Internal constitution of the Earth, Dover, 81–106.
    [Google Scholar]
  69. Webster, S. S. 1984 A magnetic signature for tin deposits in south-east Australia. Exploration Geophysics15: 15–31.
    [Google Scholar]
  70. Whalen, J. B., and B. W.Chappell 1988 Opaque mineralogy and mafic mineral chemistry of I- and S-type granites of the Lachlan Fold Belt, southeast Australia. American Mineralogist73: 281–296.
    [Google Scholar]
  71. Whalen, J. B., K. L.Currie, and B. W.Chappell 1987 A-type granites: geochemical characteristics, discrimination and petrogenesis. Contributions to Mineralogy and Petrology95: 407–419.
    [Google Scholar]
  72. Wyborn, L. A., and C.Heinrich 1993 The relationship between late-tectonic felsic intrusives and Cu-Au mineralisation in the Eastern Fold Belt, Mount Isa Inlier, in Symposium on Recent Advances in the Mount Isa Block. Australian Institute of Geoscientists Bulletin13: 27–30.
    [Google Scholar]
  73. Wyborn, L., and P.Stuart-Smith 1993 The relationship between granite composition, host rock types, and Au ± base-metal mineralisation in the Cullen Mineral Field, Pine Creek Inlier. AGSO Research Newsletter19: 5–8.
    [Google Scholar]
  74. Wyborn, D., and S.-S.Sun 1994 Sulphur-undersaturated magmatism - a key factor for generating magma-related copper-gold deposits. AGSO Research Newsletter21: 7–8.
    [Google Scholar]
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