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Published online by Cambridge University Press:  18 July 2016

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References

Bard, E, Ménot-Combes, G, Rostek, F. 2004. Present status of radiocarbon calibration and comparison records based on Polynesian corals and Iberian Margin sediments. Radiocarbon, this issue.CrossRefGoogle Scholar
Buck, CE, Blackwell, PG. 2004. Formal statistical models for estimating radiocarbon calibration curves. Radiocarbon, this issue.Google Scholar
Danzeglocke, U, Weninger, B, Jöris, O. 2002. Köln The Cologne Radiocarbon Calibration & Paleoclimate Research Package CALPAL [WWW program and documentation]. URL:<http://www.calpal.de>..>Google Scholar
de Vries, H. 1958. Variation in concentration of radiocarbon with time and location on Earth. In: Proceedings Koninklijke Nederlandse Akademie. Wetenschappen B61:19.Google Scholar
Grootes, PM, Voelker, A, Nadeau, M-J, Sarnthein, M, Oriwall, A. 2003. Skeleton of a radiocarbon calibration from 40 to 60 kyr BP: news from the Iceland Sea. 18th International Radiocarbon Conference, Wellington, September 2003. Abstracts. p 60.Google Scholar
Hua, Q, Barbetti, M. 2004. Review of tropospheric bomb 14C data for carbon cycle modeling and age calibration purposes. Radiocarbon, this issue.CrossRefGoogle Scholar
Hughen, KA, Lehman, S, Southon, J, Overpeck, J, Marchal, O, Herring, C, Turnbull, J. 2004. 14C activity and global carbon cycle changes over the past 50,000 years. Science 303(5655):202–7.Google Scholar
Klein, J, Lerman, JC, Damon, PE, Ralph, EK. 1982. Calibration of radiocarbon dates—tables based on the consensus data of the Workshop on Calibrating the Radiocarbon Time Scale. Radiocarbon 24(1):103–50.Google Scholar
Levin, I, Kromer, B. 2004. The tropospheric 14CO2 level in mid-latitudes of the Northern Hemisphere (1959–2003). Radiocarbon, this issue.Google Scholar
North Greenland Ice Core Project members. 2004. High-resolution record of Northern Hemisphere climate extending into the last interglacial period. Nature 431: 147–51.Google Scholar
Reimer, PJ, Brown, TA, Reimer, RW. 2004. Discussion: reporting and calibration of post-bomb 14C data. Radiocarbon, this issue.Google Scholar
Reimer, PJ, Hughen, KA, Guilderson, TP, McCormac, FG, Baillie, MGL, Bard, E, Barratt, P, Beck, JW, Brown, DM, Buck, CE, Damon, PE, Friedrich, M, Kromer, B, Bronk Ramsey, C, Reimer, RW, Remmele, S, Southon, JR, Stuiver, M, van der Plicht, J. 2002. Preliminary report of the first workshop of the IntCal04 Radiocarbon Calibration/Comparison Working Group. Radiocarbon 44(3):653–61.Google Scholar
Shackleton, NJ, Fairbanks, RG, Chiu, TC, Parrenin, F. 2004. Absolute calibration of the Greenland time scale: implications for Antarctic time scales and for Δ14C. Quaternary Science Reviews 23:1513–22.Google Scholar
Southon, JR. 2004. A radiocarbon perspective on Greenland ice-core chronologies: Can we use ice cores for 14C calibration? Radiocarbon, this issue.Google Scholar
Stuiver, M, Reimer, PJ, Bard, E, Beck, JW, Burr, GS, Hughen, KA, Kromer, B, McCormac, G, van der Plicht, J, Spurk, M. 1998. IntCal98 radiocarbon age calibration, 24,000–0 cal BP. Radiocarbon 40(3):1041–83.Google Scholar
van der Plicht, J, Beck, JW, Bard, E, Baillie, MGL, Blackwell, PG, Buck, CE, Friedrich, M, Guilderson, TP, Hughen, KA, Kromer, B, McCormac, FG, Bronk Ramsey, C, Reimer, PJ, Reimer, RW, Remmele, S, Richards, DA, Southon, JR, Stuiver, M, Weyhenmeyer, CE. 2004. NotCal04—Comparison/Calibration 14C records 26–50 cal kyr B P. Radiocarbon, this issue.Google Scholar
van Kreveld, S, Sarnthein, M, Erlenkeuser, H, Grootes, PM, Jung, S, Nadeau, MJ, Pflaumann, U, Voelker, A. 2000. Potential links between surging ice sheets, circulation changes, and the Dansgaard-Oeschger cycles in the Irminger Sea, 60–18 kyr. Paleoceanography 15:425–42.CrossRefGoogle Scholar
Voelker, AHL, Grootes, PM, Nadeau, MJ, Sarnthein, M. 2000. Radiocarbon levels in the Iceland Sea from 25–53 kyr and their link to the Earth's magnetic field intensity. Radiocarbon 42(3):437–52.Google Scholar
1 Center for Accelerator Mass Spectrometry L-397, Lawrence Livermore National Laboratory, Livermore, California 94550, USA. Currently: School of Archaeology and Palaeoecology, Queen's University Belfast, Belfast BT7 1NN, United Kingdom.Google Scholar