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Radiocarbon Determinations from the Mulifanua Lapita Site, Upolu, Western Samoa

Published online by Cambridge University Press:  18 July 2016

Fiona J Petchey*
Affiliation:
Radiocarbon Dating Laboratory, School of Science and Technology, University of Waikato, Private Bag 3105, Hamilton, New Zealand. Email: fpetchey@waikato.ac.nz.
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Abstract

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The Mulifanua ferry berth has the distinction of being the only site in Samoa with dentate-stamped Lapita wares, and is the most easterly Lapita site in the Pacific. Two new radiocarbon determinations of material associated with Lapita pottery found at Mulifanua are presented. The accuracy of this data is evaluated according to the results of recent reassessment of pottery from the site, and current theories regarding the age of Lapita settlement in the eastern Pacific. The resulting calibrated radiocarbon ages put occupation of the Mulifanua Lapita site at around 2880–2750 cal BP (930–800 BC). This conclusion is in agreement with the pottery chronology and supports recent hypotheses of rapid Lapita settlement in the Fiji/Tonga region around 2850–2700 cal BP (900–750 BC).

Type
Articles
Copyright
Copyright © The Arizona Board of Regents on behalf of the University of Arizona 

References

Anderson, A, Clark, G. 1999. The age of Lapita settlement in Fiji. Archaeology in Oceania 34:31–9.Google Scholar
Balazs, GH. 1995. Status of sea turtles in the Central Pacific Ocean. In: Bjorndal, KA, editor. Biology and conservation of sea turtles. Revised edition. Washington DC: Smithsonian Inst. Press. p 243–52.Google Scholar
Baquie, B. 1975. Report on Mulifanua Lagoon Pottery, Upolu. Unpublished paper. Department of Anthropology, University of Auckland.Google Scholar
Bronk Ramsey, C. 1995. Radiocarbon calibration and analysis of stratigraphy: the OxCal program. Radiocarbon 37(2):425–30.Google Scholar
Bronk Ramsey, C. 1998. OxCal program v3.0. Oxford Radiocarbon Accelerator Unit. Google Scholar
Burley, DV, Nelson, ED, Shutler, R Jr. 1999. A radiocarbon chronology for the Eastern Lapita frontier in Tonga. Archaeology in Oceania 34(2):5970.Google Scholar
Clark, JT. 1993. Radiocarbon dates from American Samoa. Radiocarbon 35(2):323–30.Google Scholar
Clark, JT. 1996. Samoan prehistory in review. In: Davidson, J, Irwin, G, Leach, F, Pawley, A, Brown, D, editors. Oceanic culture history: essays in honour of Roger Green. Special publication. Dunedin: New Zealand Journal of Archaeology. p 443–60.Google Scholar
Clark, JT, Michlovic, MG. 1996. An early settlement in the Polynesian homeland: excavations at 'Aoa Valley, Tutuila Island, American Samoa. Journal of Field Archaeology 23:151–67.Google Scholar
Clark, JT, Wright, E, Herdrich, DJ. 1997. Interactions within and beyond the Samoan archipelago: Evidence from basaltic rock geochemistry. In: Weisler, MI, editor. Prehistoric long-distance interaction in Oceania: an interdisciplinary approach. New Zealand Archaeological Association Monograph 21. p 6884.Google Scholar
Dickinson, WR. 1974. Temper sands in sherds from Mulifanua and comparison with similar tempers at Vailele and Sasoa'a (Falefa). In: Green, RC, Davidson, JM, editors. Archaeology in Western Samoa, Volume II. Bulletin of the Auckland Institute and Museum 7:179–80.Google Scholar
Dickinson, WR, Green, RC. 1998. Geoarchaeological context of Holocene subsidence at the Ferry Berth Lapita Site, Mulifanua, Upolu, Samoa. Geoarchaeology: An International Journal 13(3):239–63.Google Scholar
Dye, TS. 1990. Marine turtle bones from an archaeological site in Polynesia yield reliable age determinations. Radiocarbon 32(2):143–7.Google Scholar
Green, RC. 1974a. A review of portable artefacts from Western Samoa. In: Green, RC, Davidson, JM, editors. Archaeology in Western Samoa, Volume II. Bulletin of the Auckland Institute and Museum 7:245–75.Google Scholar
Green, RC. 1974b. Pottery from the lagoon at Mulifanua, Upolu. In: Green, RC, Davidson, JM, editors. Archaeology in Western Samoa, Volume II. Bulletin of the Auckland Institute and Museum 7:170–5.Google Scholar
Green, RC. 1979. Lapita. In: Jennings, JD, editor. The prehistory of Polynesia. Cambridge: Harvard University Press. p 2760.Google Scholar
Green, RC, Richards, HG. 1975. Lapita pottery and a lower sea level in Western Samoa. Pacific Science 29(4):309–15.Google Scholar
Hedges, REM, Van Klinken, GJ. 1992. A review of current approaches in the pretreatment of bone for radiocarbon dating by AMS. Radiocarbon 34(3):279–91.Google Scholar
Jennings, JD. 1974. The Ferry Berth site, Mulifanua district, Upolu. In: Green, RC, Davidson, JM, editors. Archaeology in Western Samoa, Volume II. Bulletin of the Auckland Institute and Museum 7:176–8.Google Scholar
Kirch, PV. 1988. Niuatoputapu: the prehistory of a Polynesian chiefdom. Seattle: Thomas Burke Memorial Washington State Museum. Monograph 5.Google Scholar
Kirch, PV. 1993. Radiocarbon chronology of the To'aga site. In: Kirch, PV, Hunt, TL, editors. The To'aga site: three millennia of Polynesian occupation in the Manu'a Islands, American Samoa. Contributions of the University of California Archaeological Research Facility No. 51. Berkeley: University of California. p 8592.Google Scholar
Leach, HM, Green, RC. 1989. New information for the Ferry Berth site, Mulifanua, Western Samoa. Journal of the Polynesian Society 98:319–29.Google Scholar
Meylan, A. 1995. Sea turtle migration – evidence from Tag returns. In: Bjorndal, KA, editor. Biology and conservation of sea turtles. Revised edition. Washington DC: Smithsonian Inst. Press. p 91100.Google Scholar
Mortimer, JA. 1995. Feeding ecology of sea turtles. In: Bjorndal, KA, editor. Biology and conservation of sea turtles. Revised edition. Washington DC: Smithsonian Inst. Press. p 103–9.Google Scholar
Petchey, FJ. 1995. The Archaeology of Kudon: Archaeological Analysis of Lapita Ceramics from Mulifanua, Samoa and Sigatoka, Fiji. Unpublished MA thesis. Department of Anthropology, University of Auckland.Google Scholar
Petchey, FJ. 1998. Radiocarbon Analysis of a Novel Bone Sample Type: Snapper and Barracouta Bone from New Zealand Archaeological Sites. Unpublished D.Phil thesis, Department of Chemistry, University of Waikato.Google Scholar
Phelan, MB. 1999. A ΔR correction value for Samoa from known-age marine shells. Radiocarbon 41(1):99101.Google Scholar
Redvers-Newton, NA Coote, GE. 1994. Bone pretreatments for radiocarbon dating: A study incorporating AMS dating and ion beam analysis. Nuclear Instruments and Methods B29:270–3.Google Scholar
Schoeninger, MJ, DeNiro, MJ. 1984. Nitrogen and carbon isotopic composition of bone collagen from marine and terrestrial animals. Geochimica et Cosmochimica Acta 48:625–39.Google Scholar
Spennemann, DHR, Head, MJ. 1998. Tongan pottery chronology, 14C dates and the hardwater effect. Quaternary Geochronology 17:1047–56.Google Scholar
Stuiver, M, Reimer, PJ, Braziunas, S. 1998. High precision radiocarbon age calibration for terrestrial and marine sa mples. Radiocarbon 40(3):1127–51.CrossRefGoogle Scholar
Van Klinken, GJ, Hedges, REM. 1995. Experiments on collagen-humic interactions: speed of humic uptake, and effects of diverse chemical treatments. Journal of Archaeological Science 22:263–70.CrossRefGoogle Scholar