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Dating resin coating on pottery: the Spirit Cave early ceramic dates revised

Published online by Cambridge University Press:  02 January 2015

C.D. Lampert
Affiliation:
Department of Archaeological Sciences, University of Bradford, UK
I.C. Glover
Affiliation:
Institute of Archaeology, University College London, UK
R.E.M. Hedges
Affiliation:
Oxford Radiocarbon Accelerator Unit, Oxford University, UK
C.P. Heron
Affiliation:
Department of Archaeological Sciences, University of Bradford, UK
T.F.G. Higham
Affiliation:
Oxford Radiocarbon Accelerator Unit, Oxford University, UK
B. Stern
Affiliation:
Department of Archaeological Sciences, University of Bradford, UK
R. Shoocongdej
Affiliation:
Department of Archaeology, Silpakorn University, Bangkok, Thailand
G.B. Thompson
Affiliation:
Department of Archaeological Sciences, University of Bradford, UK

Abstract

Pottery found at Spirit Cave, Thailand, has been claimed as among the earliest ceramics in the world – a radiocarbon date of 7500 BP being obtained from associated charcoal. However radiocarbon dating of organic resin found on some of the sherds gave a date of around 3000 BP. This is another example of improved precision in dating by pin-pointing the context and using AMS. The authors describe how it was done and assess its validity

Type
Method
Copyright
Copyright © Antiquity Publications Ltd. 2003

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References

Beck, C. W., Stewart, D. R. & Stout, E. C.. 1994. Analysis of Naval Stores from the Late-Roman Ship, in McCann, A. M. and Freed, J., Deep Water Archaeology: A Late-Roman Ship from Carthage and an Ancient Trade Route near Skerki Bank off Northwest Sicily, Journal of Roman Archaeology Supplementary Series Number 13, 109—121. Ann Arbor, MI: Journal of Roman Archaeology.Google Scholar
Bronk Ramsey, C. 1995. Radiocarbon Calibration and Analysis of Stratigraphy: The OxCal Program, Radiocarbon 37(2): 42530.CrossRefGoogle Scholar
Burkill, I. H. 1935. A Dictionary of the Economic Products of the Malay Peninsula, Vol. I. London: Crown Agents for the Colonies.Google Scholar
Ehrich, R.W. 1992. Chronologies in Old World Archaeology, Chicago: university of Chicago Press.Google Scholar
Gorman, C. F. 1969. Hoabinhian: A Pebble-Tool Complex with Early Plant Associations in Southeast Asia, Science 163: 671—673.Google Scholar
Gorman, C. F. 1972. Excavations at Spirit Cave, North Thailand: Some Interim Interpretations, Asian Perspectives 13: 79—107.Google Scholar
Higham, C. 1989. The Archaeology of Mainland Southeast Asia: From 10,000 BC to the Fall of Angkor, Cambridge: Cambridge university Press.Google Scholar
Higham, C.F.W & Thosarat, R.. 1998a. Prehistoric Thailand: from early settlement to Sukhothai, London: Thames & Hudson Ltd. 1998b (in press), Noen U-Loke and the Implications for the Origins of Early States, paper presented at the 16th Congress of the Indo-Pacific Prehistory Association, Melaka,1998.Google Scholar
Hotchkis, M. A. C., Fink, D., Jacobsen, G. E., Lawson, E. M., Shying, M., Barbetti, M., Grave, Hua Minh Quan, P. & Head, J.. 1994. 14C Analyses at the ANTARES AMS Centre: Dating the Log Coffins of Northwest Thailand, Nuclear Instruments and Methods in Physics Research B 92: 27—30.Google Scholar
Howes, F. N. 1949. Vegetable Gums and Resins, Waltham, Massachusetts: Chronica Botanica Co.Google Scholar
Lampert, C. D., Glover, I. C., Heron, C.P, Stern, B., Shoocongdej, R. & Thompson, G. B.. 2002. Characterization and Radiocarbon Dating of Archaeological Resins from Southeast Asia, in Jakes, K. A. (ed.), Archaeological Chemistry: Materials, Methods and Meaning, ACS Symposium Series 831, 84—109. Washington: American Chemical Society.Google Scholar
Roberts, A., Barton, N. & Evans, J.. 1998. Early Mesolithic Mastic: Radiocarbon Dating and Analysis of Organic Residues from Thatcham III, Star Carr and Lackford Heath, in Ashton, N., Healy, F. and Pettitt, P. (eds.), Stone Age Archaeology: Essays in honour of John Wymer, Oxbow Monograph 102, Lithic Studies Society Occasional Paper 6: 185—192. Oxford: Oxbow Books.Google Scholar
Shoocongdej, R. 2001. personal communication.Google Scholar
Solheim, W. G. 1972. An Earlier Agricultural Revolution, Scientific American 206: 34—41.Google Scholar
Stuiver, M., Reimer, P. J., Bard, E., Beck, J. W., Burr, G. S., Hughen, K. A., Kromer, B., McCormac, G., van der Plicht, J., & Spurk, M.. 1998. INTCAL 98 Radiocarbon Age Calibration, 24,000—0 cal BP, Radiocarbon 40(3): 1041—1083.Google Scholar
Yen, D. E. 1977. Hoabinhian Horticulture? The Evidence and the Questions from Northwest Thailand, in Allen, J., Golson, J., and Jones, R. (eds.), Sunda and Sahul: Prehistoric Studies in Southeast Asia, Melanesia and Australia, 567—599, London: Academic Press Inc.Google Scholar