REFERENCES

Berggren, W.A., Kent, D.V., Swisher, C.C., III, and Aubry, M.-P., 1995. A revised Cenozoic geochronology and chronostratigraphy. In Berggren, W.A., Kent, D.V., Aubry, M.-P., and Hardenbol, J. (Eds.), Geochronology, Time Scales and Global Stratigraphic Correlation. Spec. Publ.--Soc. Econ. Paleontol. Mineral. (Soc. Sediment. Geol.), 54:129-212.

Bryden, H.L., and Heath, R.A., 1985. Energetic eddies at the northern edge of the Antarctic Circumpolar Current in the Southwest Pacific. Prog. Oceanogr., 14:65-87.

Campbell, H.J., Andrews, P.B., Beu, A.G., Maxwell, P.A., Edwards, R.A., Laird, M.G., Hornibrook, N. de B., Mildenhall, D.C., Watters, W.A., Buckeridge, J.S., Lee, D.E., Strong, C.P., Wilson, G.J., and Hayward, B.W., 1993. Cretaceous-Cenozoic geology and biostratigraphy of the Chatham Islands, New Zealand. Inst. Geol. Nucl. Sci. Monogr., 2:269.

Cande, S.C., and Kent, D.V., 1995. Revised calibration of the geomagnetic polarity timescale for the Late Cretaceous and Cenozoic. J. Geophys. Res., 100:6093-6095.

Carter, L., 1989. New occurrences of manganese nodules in the South-Western Pacific Basin, east of New Zealand. N. Z. J. Mar. Freshwater Res., 23:247-253.

Carter, L., Carter, R.M., McCave, I.N., and Gamble, J., 1996. Regional sediment recycling in the abyssal Southwest Pacific Ocean. Geology, 24:735-738.

Carter, L., and McCave, I.N., 1997. The sedimentary regime beneath the deep western boundary current inflow to the Southwest Pacific Ocean. J. Sediment. Res., 67:1005-1017.

Carter, L., and Wilkin, J., in press. Abyssal circulation around New Zealand: a comparison between observations and a global circulation model. Mar. Geol.

Fourtanier, E., 1991. Paleocene and Eocene diatom biostratigraphy and taxonomy of eastern Indian Ocean Site 752. In Weissel, J., Peirce, J., Taylor, E., Alt, J., et al., Proc. ODP, Sci. Results, 121: College Station, TX (Ocean Drilling Program), 171-188.

Gieskes, J.M., 1974. Interstitial water studies, Leg 25. In Simpson, E.S.W., Schlich, R., et al., Init. Repts. DSDP, 25: Washington (U.S. Govt. Printing Office), 361-394.

Gieskes, J.M., and Lawrence, J.R., 1981. Alteration of volcanic matter in deep-sea sediments: evidence from the chemical composition of interstitial waters from deep sea drilling cores. Geochim. Cosmochim. Acta, 45:1687-1703.

Gradstein, F.M., and Berggren, W.A., 1981. Flysch-type agglutinated foraminifera and the Maestrichtian to Paleogene history of the Labrador and North seas. Mar. Micropaleontol., 6:211-269.

Harrison, W.E., Hesse, R., and Gieskes, J.M., 1982. Relationship between sedimentary facies and interstitial water chemistry of slope, trench, and Cocos plate sites from the Middle America Trench transect, active margin off Guatemala, Deep Sea Drilling Project Leg 67. In Aubouin, J., von Huene, R., et al., Init. Repts. DSDP, 67: Washington (U.S. Govt. Printing Office), 603-614.

Hollis, C.J., 1997. Cretaceous-Paleocene Radiolaria of eastern Marlborough, New Zealand. Inst. Geol. Nucl. Sci. Monogr., 17:1-152.

Hollis, C.J., Waghorn, D.B., Strong, C.P., and Crouch, E.M., 1997. Integrated Paleogene biostratigraphy of DSDP Site 277 (Leg 29): foraminifera, calcareous nannofossils, Radiolaria, and palynomorphs. Inst. Geol. Nucl. Sci., Sci. Rep., 97/07.

Hornibrook, N. de B., Brazier, R.C., and Strong, C.P., 1989. Manual of New Zealand Permian to Pleistocene foraminiferal biostratigraphy. Paleontol. Bull. N. Z. Geol. Surv., 56:1-175.

Kaiho, K., Morgans, H.E.G., and Okada, H., 1993. Faunal turnover of intermediate-water benthic foraminifera during the Paleogene in New Zealand. Mar. Micropaleontol., 23:51-86.

Kastner, M., and Gieskes, J.M., 1976. Interstitial water profiles and sites of diagenetic reactions, Leg 35, DSDP, Bellingshausen Abyssal Plain. Earth Planet. Sci. Lett., 33:11-20.

Kennett, J.P., 1977. Cenozoic evolution of Antarctic glaciation, the circum-Antarctic Ocean, and their impact on global paleoceanography. J. Geophys. Res., 82:3843-3860.

--------, 1982. Marine Geology: Englewood Cliffs, NJ (Prentice-Hall).

Kennett, J.P., Houtz, R.E., et al., 1975. Init. Repts. DSDP, 29: Washington (U.S. Govt. Printing Office).

Kennett, J.P., von der Borch, C.C., et al., 1986. Init. Repts. DSDP, 90: Washington (U.S. Govt. Printing Office).

Lawver, L.A., and Gahagan, L.M., 1994. Constraints on timing of extension in the Ross Sea region. Terra Antarct., 1:545-552.

Martini, E., 1971. Standard Tertiary and Quaternary calcareous nannoplankton zonation. In Farinacci, A. (Ed.), Proc. 2nd Int. Conf. Planktonic Microfossils Roma: Rome (Ed. Tecnosci.), 2:739-785.

McCave, I.N., 1988. Biological pumping upwards of the coarse fraction of deep-sea sediments. J. Sediment. Petrol., 58:148-158.

McCave, I.N., and Carter, L., 1997. Recent sedimentation beneath the Deep Western Boundary Current off northern New Zealand. Deep-Sea Res., 44:1203-1237.

Morrow, R., Church, J., Coleman, R., Chelton, D., and White, N., 1992. Eddy momentum flux and its contribution to the Southern Ocean momentum balance. Nature, 357:482-484.

Orsi, A.H., Whitworth, T., III, and Nowlin, W.D., Jr., 1995. On the meridional extent and fronts of the Antarctic Circumpolar Current. Deep-Sea Res., 42:641-673.

Perch-Nielsen, K., 1985. Cenozoic calcareous nannofossils. In Bolli, H.M., Saunders, J.B., and Perch-Nielsen, K. (Eds.), Plankton Stratigraphy: Cambridge (Cambridge Univ. Press), 427-554.

Perry, E., and Hower, J., 1970. Burial diagenesis in Gulf Coast pelitic sediments. Clays Clay Miner., 18:165-177.

Raine, J.I., Strong, C.P., and Wilson, G.J., 1993. Biostratigraphic revision of petroleum exploration wells, Great South Basin, New Zealand. Inst. Geol. Nucl. Sci., Sci. Rep., 93/32.

Roberts, A.P., Stoner, J.S., and Richter, C., 1996. Coring induced magnetic overprints and limitations of the long-core paleomagnetic measurements technique: some observations from Leg 160, eastern Mediterranean Sea. In Emeis, K.-C., Robertson, A.H.F., Richter, C., et al., Proc. ODP, Init. Repts., 160: College Station, TX (Ocean Drilling Program), 497-505.

Roberts, A.P., and Turner, G.M., 1993. Diagenetic formation of ferrimagnetic iron sulphide minerals in rapidly deposited marine sediments, South Island, New Zealand. Earth Planet. Sci. Lett., 115:257-273.

Shipboard Scientific Party, 1975. Site 276. In Kennett, J.P., Houtz, R.E., et al., Init. Repts. DSDP, 29: Washington (U.S. Govt. Printing Office), 1155-1169.

Skempton, A.W., 1970. The consolidation of clays by gravitational compaction. Q. J. Geol. Soc. London, 125:373-411.

Strong, C.P., Hollis, C.J., and Wilson, G.J., 1995. Foraminiferal, radiolarian, and dinoflagellate biostratigraphy of late Cretaceous to middle Eocene pelagic sediments (Muzzle Group), Mead Stream, Marlborough, New Zealand. N. Z. J. Geol. Geophys., 38:171-209.

Turner, G.M., and Kamp, P.J.J., 1990. Paleomagnetic location of the Jaramillo Subchron and the Matuyama-Brunhes transition in the Castlecliffian stratotype section, Wanganui Basin, New Zealand. Earth Planet. Sci. Lett., 100:42-50.

van Andel, T.H., 1975. Mesozoic/Cenozoic calcite compensation depth and the global distribution of calcareous sediments. Earth Planet. Sci. Lett., 26:187-194.

Wilson, G.S., and Roberts, A.P., 1981. Deep-sea drilling interstitial water studies: implications for chemical alteration of the oceanic crust layers I and II. In Warme, J.E., Douglas, R.G., and Winter, E.L., (Eds.), The Deep Sea Drilling Project: A Decade of Progress. Spec. Publ.--Soc. Econ. Paleontol. Mineral., 32:149-167.

--------, 1999. Diagenesis of magnetic mineral assemblages in multiply redeposited siliciclastic marine sediments, Wanganui Basin, New Zealand. Geol. Soc. Spec. Publ. London, 151:95-108.