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Radiocarbon Dating and Intercomparison of Some Early Historical Radiocarbon Samples

Published online by Cambridge University Press:  25 April 2018

A J T Jull*
Affiliation:
Department of Geosciences, University of Arizona, Tucson, AZ 85721USA AMS Laboratory, University of Arizona, Tucson, AZ 85721USA Isotope Climatology and Environmental Research Centre, Institute for Nuclear Research, 4026 Debrecen, Hungary
C L Pearson
Affiliation:
Laboratory for Tree Ring Research, University of Arizona, Tucson, AZ 85721USA
R E Taylor
Affiliation:
Keck Carbon Cycle AMS Laboratory, University of California Irvine, Irvine, CA 92697USA Department of Anthropology, University of California Riverside, Riverside, CA 92521 USA and Cotsen Institute of Archaeology, University of California, Los Angeles, Los Angeles, CA 90095USA
J R Southon
Affiliation:
Keck Carbon Cycle AMS Laboratory, University of California Irvine, Irvine, CA 92697USA
G M Santos
Affiliation:
Keck Carbon Cycle AMS Laboratory, University of California Irvine, Irvine, CA 92697USA
C P Kohl
Affiliation:
University of California San Diego, La Jolla CA 92093USA
I Hajdas
Affiliation:
Laboratory for Ion Beam Physics, ETH-Zürich, 8092 Zürich, Switzerland
M Molnar
Affiliation:
Isotope Climatology and Environmental Research Centre, Institute for Nuclear Research, 4026 Debrecen, Hungary
C Baisan
Affiliation:
Laboratory for Tree Ring Research, University of Arizona, Tucson, AZ 85721USA
T E Lange
Affiliation:
AMS Laboratory, University of Arizona, Tucson, AZ 85721USA
R Cruz
Affiliation:
AMS Laboratory, University of Arizona, Tucson, AZ 85721USA
R Janovics
Affiliation:
Isotope Climatology and Environmental Research Centre, Institute for Nuclear Research, 4026 Debrecen, Hungary
I Major
Affiliation:
Isotope Climatology and Environmental Research Centre, Institute for Nuclear Research, 4026 Debrecen, Hungary
*
*Corresponding author. Email: jull@email.arizona.edu.

Abstract

We performed a new series of measurements on samples that were part of early measurements on radiocarbon (14C) dating made in 1948–1949. Our results show generally good agreement to the data published in 1949–1951, despite vast changes in technology, with only two exceptions where there was a discrepancy in the original studies. Our new measurements give calibrated ages that overlap with the known ages. We dated several samples at four different laboratories, and so we were also able to make a small intercomparison at the same time. In addition, new measurements on samples from other Egyptian materials used by Libby and co-workers were made at UC Irvine. Samples of tree rings used in the original studies (from Broken Flute Cave and Centennial Stump) were obtained from the University of Arizona Laboratory of Tree-Ring Research archive and remeasured. New data were compared to the original studies and other records.

Type
Research Article
Copyright
© 2018 by the Arizona Board of Regents on behalf of the University of Arizona 

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References

REFERENCES

Anderson, EC, Arnold, JR, Libby, WF. 1951. Measurement of low level radiocarbon. Review of Scientific Instruments 22:225230.Google Scholar
Anderson, EC, Libby, WF, Weinhouse, S, Reid, AF, Kirshenbaum, AD, Grosse, AV. 1947. Natural radiocarbon from cosmic radiation. Physical Review 72:931936.Google Scholar
Arnold, JR. 1981. Willard F. Libby (1908-1980). The American Philosophical Society Yearbook 1980. Philadelphia: The American Philosophical Society. p 608612.Google Scholar
Arnold, JR. 1992. The early years with Libby at Chicago: a retrospective. In: Taylor RE, Long A, Kra RS, editors. Radiocarbon after Four Decades: An Interdisciplinary Perspective. New York: Spring-Verlag. p 310.Google Scholar
Arnold, JR, Libby, WF. 1949. Age determination by radiocarbon content: checks with samples of known age. Science 110:678680.CrossRefGoogle ScholarPubMed
Arnold, JR, Libby, WF. 1950. Radiocarbon Dates (September 1, 1950). Unpublished document. Institute for Nuclear Studies, University of Chicago.Google Scholar
Arnold, JR, Libby, WF. 1951. Radiocarbon dates. Science 113:111120.Google Scholar
Beverly, RK, Beaumont, W, Tauz, D, Ormsby, KM, von Reden, KF, Santos, GM, Southon, JR. 2010. The Keck Carbon Cycle AMS Laboratory, University of California Irvine: status report. Radiocarbon 52(2):301309.Google Scholar
Douglass, AE. 1929. The secret of the Southwest solved by talkative tree rings. National Geographic Magazine 56:736770.Google Scholar
Jull, AJT, Burr, GS, Beck, JW, Hodgins, GWL, Biddulph, DL, Gann, J, Hatheway, AL, Lange, TE, Lifton, NA. 2006. Application of accelerator mass spectrometry to environmental and paleoclimate studies at the University of Arizona. In: Povinec P, Sanchez-Cabrera JA, editors. Radionuclides in the Environment. Amsterdam: Elsevier. p 323.Google Scholar
Kamen, MD. 1963. The early history of 14C. Science 140:584590.Google Scholar
Korff, SA, Danforth, WE. 1939. Neutron measurements with boron-trifloride counters. Physical Review 55:980.Google Scholar
Leavitt, SW, Bannister, B. 2009. Radiocarbon and dendrochronology: the Laboratory of Tree-Ring Research connection. Radiocarbon 51(1):373384.CrossRefGoogle Scholar
Libby, WF. 1933. Radioactivity of ordinary elements, especially samarium and neodymium: method of detection [PhD dissertation]. Berkeley: University of California.Google Scholar
Libby, WF. 1934. Radioactivity of neodynium and samarium. Physical Review 46:196.CrossRefGoogle Scholar
Libby, WF. 1946. Atmospheric helium three and radiocarbon from cosmic radiation. Physical Review 69:671672.Google Scholar
Libby, WF. 1951. Chicago radiocarbon dates II. Science 114:291296.Google Scholar
Libby, WF. 1952a. Radiocarbon Dating, 1st edition. Chicago: University of Chicago Press.Google Scholar
Libby, WF. 1952b. Chicago radiocarbon dates III. Science 116:673681.CrossRefGoogle ScholarPubMed
Libby, WF. 1954. Chicago radiocarbon dates V. Science 120:733742.CrossRefGoogle ScholarPubMed
Libby, WF. 1955. Radiocarbon Dating, 2nd edition. Chicago: University of Chicago Press.Google Scholar
Libby, WF. 1956. Radiocarbon dating. American Scientist 44:98112.Google Scholar
Libby, WF. 1960. Nobel prize lecture. In: Nobel Lectures: Chemistry 1942–1962. Elsevier. Amsterdam. p 593610, Available online at: https://www.nobelprize.org/nobel_prizes/chemistry/laureates/1960/libby-lecture.html.Google Scholar
Libby, WF. 1979. Interview with Willard F. Libby by Mary Terrall. Oral History Program: University of California. Los Angeles.Google Scholar
Libby, WF, Anderson, EC, Arnold, JR. 1949. Age determination by radiocarbon content: world wide assay of natural radiocarbon. Science 109:227228.CrossRefGoogle ScholarPubMed
Marlowe, G. 1980. W. F. Libby and the archaeologists, 1946–1948. Radiocarbon 22(3):10051014.Google Scholar
Molnár, M, Rinyu, L, Veres, M, Seiler, M, Wacker, L, Synal, H-A. 2013. ENVIRONMICADAS: a mini 14C AMS with enhanced gas ion source interface in the Hertelendi Laboratory of Environmental Studies (HEKAL), Hungary. Radiocarbon 55(1):338344.Google Scholar
Ramsey, CB, Dee, MW, Rowland, JM, Higham, TFG, Harris, SA, Brock, F, Quiles, A, Wild, EM, Marcus, ES, Shortland, AJ. 2010. Radiocarbon-based chronology for dynastic Egypt. Science 328:15541557.Google Scholar
Segrè, E. 1970. Enrico Fermi Physicist. Chicago: University of Chicago Press.Google Scholar
Segrè, E. 1993. A Mind Always in Motion: The Autobiography of Emilio Segrè. Berkeley: University of California.Google Scholar
Santos, GM, Ormsby, K. 2013. Behavioral variability in ABA chemical pretreatment close to the 14C age limit. Radiocarbon 55(2):534544.Google Scholar
Southon, JR, Magana, AL. 2010. A comparison of cellulose extraction and ABA pretreatment methods of AMS 14C dating of ancient wood. Radiocarbon 52(3):13711379.Google Scholar
Taylor, RE. 2014. Passing of the last of the three who established 14C dating: a historical footnote. Radiocarbon 56(3):913921.Google Scholar
Taylor, RE, Bar-Yosef, O. 2014. Radiocarbon Dating: An Archaeological Perspective, 2nd edition. New York: Routledge.Google Scholar
Wacker, L, Bonani, G, Friedrich, M, Hajdas, I, Kromer, B, Nemec, M, Ruff, M, Suter, M, Synal, H-A. 2010. MICADAS: routine and high-precision radiocarbon dating. Radiocarbon 52(2):252262.Google Scholar