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The ultramafic—mafic complex at North Cape, northernmost New Zealand

Published online by Cambridge University Press:  01 May 2009

M. C. Bennett
Affiliation:
Department of Geology, Museum Building, Trinity College, Dublin 2, Eire

Summary

The ultramafic—mafic complex at North Cape lies in a Mesozoic—Lower Tertiary tectonic belt linking New Zealand with New Caledonia and Papua New Guinea. The complex is faulted against Cretaceous submarine tholeiites and contains (1) serpentinized harzburgite and lherzolite of probable cumulus origin (and intruded by more Fe-rich wehrlitic veins and dykes), overlain by (2) layered olivine- and orthopyroxene-gabbro subvolcanic cumulates which are themselves host for (3) a sheeted dyke swarm of mainly quartz-diorite composition. It is suggested that the complex was emplaced with the Cretaceous volcanics by obduction of Mesozoic oceanic crust during the Lower Tertiary.

Type
Articles
Copyright
Copyright © Cambridge University Press 1976

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References

Aumento, F. 1965. Diorites from the Mid-Atlantic Ridge at 45 °N. Science 165, 112.Google Scholar
Avias, J. 1967. Overthrust structure of the main ultrabasic New Caledonia massifs. Tectonophysics 4, 531–42.CrossRefGoogle Scholar
Bain, J. H. C. 1973. A summary of the main structural elements of Papua New Guinea. In Coleman, P. J. (Ed.): The Western Pacific, Island Arcs, Marginal Seas, Geochemistry, 147–61, University of Western Australia Press, Nedlands, Australia.Google Scholar
Bartrum, J. A. & Turner, F. J. 1928. Pillow lavas, peridotites and associated rocks of northernmost New Zealand. Trans. N.Z. Inst. 59, 98138.Google Scholar
Battey, M. H. 1956. Observations on the structure of far northern New Zealand. Rec. Auckland Inst. Mus. 4, 309–15.Google Scholar
Boyd, F. R. Jr &Schairer, J. F. 1964. The system MgSiO3—CaMgSi2O6. J. Petrology 5, 275309.CrossRefGoogle Scholar
Brothers, R. N. 1974 (a). High-pressure schists in northern New Caledonia. Contr. Mineral. Petrol. 46, 109–27.CrossRefGoogle Scholar
Brothers, R. N. 1974 (b). Kaikoura Orogeny in Northland, New Zealand. N.Z. Jl geol. Geophys. 17, 118.CrossRefGoogle Scholar
Brothers, R. N. & Blake, M. C. Jr., 1973. Tertiary plate tectonics and high-pressure metamorphism in New Caledonia. Tectonophysics 17, 337–58.CrossRefGoogle Scholar
Cann, J. R. 1968. Geological processes at mid-ocean ridge crests. Geophys. J. 15, 331–41.CrossRefGoogle Scholar
Coleman, R. G. 1966. New Zealand serpentinites and associated metasomatic rocks. Bull. N.Z. geol. Surv. 76, 102 pp.Google Scholar
Coleman, R. G. 1971. Plate tectonic emplacement of upper mantle peridotites along continental edges. J. geophys. Res. 76, 1212–22.CrossRefGoogle Scholar
Coleman, R. G. & Peterman, Z. E. 1975. Oceanic Plagiogranite. J. geophys. Res. 80, 1099–108.CrossRefGoogle Scholar
Davies, H. L. 1971. Peridotite-gabbro-basalt complex in Eastern Papua. Bull. Bur. Min. Resources geol. geophys. 128, 48 pp.Google Scholar
Davies, H. L. & Smith, I. E. 1971. Geology of eastern Papua. Bull. geol. Soc. Am. 82, 3299–312.CrossRefGoogle Scholar
Deer, W. A., Howie, R. A. & Zussman, J. 1963. Rock-forming Minerals. Vol. 2 Chain Silicates. 379 pp. Longman, London.Google Scholar
Grindley, G. W. 1974. New Zealand. In Spencer, A. M. (Ed.): Mesozoic-Cainozoic Orogenic Belts: Data for Orogenic Studies, 387416. Geol. Soc. Lond.Google Scholar
Guillon, J. H. 1974. The geology of New Caledonia and the Loyalty Islands. In Spencer, A. M. (Ed.): Mesozoic and Cainozoic Orogenic Belts: Data for Orogenic Studies, 445–52. Geol. Soc. Lond.Google Scholar
Jackson, E. D. 1967. Ultramafic cumulates in the Stillwater, Great Dyke and Bushveld intrusions. In Wyllie, P. J. (Ed.): Ultramaflc and Related Rocks, pp. 2038. John Wiley & Sons, New York.Google Scholar
Jakeš, P. & Gill, J. 1970. Rare earth elements and the island arc tholeiite series. Earth Planet. Sci. Letts 9, 1728.CrossRefGoogle Scholar
Jakeš, P. & White, A. J. R. 1971. Composition of island arcs and continental growth. Earth Planet. Sci. Lett. 12, 224–30.CrossRefGoogle Scholar
Karig, D. E. 1971. Origin and development of marginal basins in the Western Pacific. J. geophys. Res. 76, 2542–61.CrossRefGoogle Scholar
Kushiro, I. & Schairer, J. F. 1963. New data on the system diopside-forsterite-silica. Carnegie Inst. Wash. Yearbook 63, 95103.Google Scholar
Leitch, E. C. 1970. Contributions to the geology of northernmost New Zealand. II. The stratigraphy of the North Cape district. Trans. R. Soc. N.Z. Earth Sci. 8, 4568.Google Scholar
Lillie, A. R. & Brothers, R. N. 1970. The geology of New Caledonia. N.Z. Jl geol. Geophys. 13, 145–83.CrossRefGoogle Scholar
Lillie, A. R. & Brothers, R. N. 1971. Corrections, and some new information on the peridotites of New Caledonia. N.Z. Jl geol. Geophys. 14, 251–52.CrossRefGoogle Scholar
Miyashiro, A. 1972. Pressure and temperature conditions and tectonic significance of regional and ocean-floor metamorphism. In Ritsema, A. R. (Ed.). The Upper Mantle, Tectophysics 13 (1—4), 141–59.Google Scholar
Miyashiro, A. 1973. The Troodos ophiolitic complex was probably formed in an island arc. Earth Planet. Sci. Lett. 19, 218–24.CrossRefGoogle Scholar
Miyashiro, A., Shido, F. & Ewing, M. 1970. Petrologic models for the Mid-Atlantic Ridge. Deep Sea Res. 17, 109–23.Google Scholar
Miyashiro, A., Shido, F. & Ewing, M. 1971. Metamorphism in the Mid-Atlantic Ridge near 24° and 30° N. Philos. Trans. R. Soc. Lond. Ser. A 268, 589603.Google Scholar
Moores, E. 1973. Geotectonic significance of ultramafic rocks. Earth Sci. Reviews 9, 241–58.CrossRefGoogle Scholar
Nicolas, A., Bouchez, J. L., Boudier, F. & Mercier, J. C. 1971. Textures, structures and fabrics due to solid state flow in some European lherzolites. Tectophysics 12, 5586.CrossRefGoogle Scholar
Packham, G. H. 1973. A speculative Phanerozoic history of the South-West Pacific. In Coleman, P. J. (Ed.): The Western Pacific, Island Arcs, Marginal Seas, Geochemistry, 369–88. University of Western Australia Press, Nedlands, W. Australia.Google Scholar
Raleigh, C. B. 1967. Experimental deformation of ultramfiac rocks and minerals. In Wyllie, P. J. (Ed.): Ultramafic and Related Rocks, 191–99. John Wiley & Sons, New York.Google Scholar
Reilly, W. I. 1965. Sheet 1 North Cape (1st ed.), Gravity Map of New Zealand. 1:250,000 Bouger Anomalies: Isostatic Anomalies. N.Z. Dep. Sci. Industr. Res. Wellington.Google Scholar
Shor, G. G., Kirk, H. K. & Menard, H. W. 1971. Crustal structure of the Melanesian area. J. geophys. Res. 76, 2562–86.CrossRefGoogle Scholar
Solomon, S. & Biehler, S. 1969. Crustal structure from gravity anomalies in the Southwest Pacific. J. geophys. Res. 74, 6696–701.CrossRefGoogle Scholar
Spooner, E. T. C., Beckinsale, R. D., Fyfe, W. S. & Smewing, J. D. 1974. O18 enriched ophiolitic metabasic rocks from E. Liguria (Italy), Pindos (Greece), and Troodos (Cyprus). Contr. Mineral. Petrol. 47, 4162.CrossRefGoogle Scholar
Summerhayes, C. P. 1969. Submarine geology and geomorphology off northern New Zealand. N.Z. Jl geol. Geophys. 12, 507–25.CrossRefGoogle Scholar
Thayer, T. P. 1967. Chemical and structural relations of ultramafic and feldspathic rocks in Alpine intrusive complexes. In Wyllie, P. J. (Ed.): Ultramafic and Related Rocks, 222–39. John Wiley & Sons, New York.Google Scholar
Thayer, T. P. 1969. Peridotite-gabbro complexes as keys to the petrology of mid-ocean ridges. Bull. geol. Soc. Am. 80, 1515–22.CrossRefGoogle Scholar
Wager, L. R. 1968. Rhythmic and cryptic layering in mafic and ultramafic plutons. In Basalts, The Poldervaart Treatise on Rocks of Basaltic Composition, vol. 2, 573622. Interscience, New York.Google Scholar
Wager, L. R., Brown, G. M. & Wadsworth, W. J. 1960. Types of igneous cumulates. J. Petrology 1, 7385.CrossRefGoogle Scholar