Hostname: page-component-848d4c4894-hfldf Total loading time: 0 Render date: 2024-06-08T02:46:04.539Z Has data issue: false hasContentIssue false

Note Concerning “Intercomparison of High-Precision 14C Measurements at the University of Arizona and the Queen's University of Belfast Radiocarbon Laboratories” by Kalin et al. (1995) and the Regional Effect

Published online by Cambridge University Press:  18 July 2016

Paul E. Damon*
Affiliation:
Laboratory of Isotope Geochemistry, Department of Geosciences, The University of Arizona Tucson, Arizona 85721 USA
Rights & Permissions [Opens in a new window]

Extract

Core share and HTML view are not available for this content. However, as you have access to this content, a full PDF is available via the ‘Save PDF’ action button.

Although a coauthor of the paper of Kahn et al. (1995), I was not available in time to review the final copy. Consequently, I take this opportunity to make further comments and, hopefully, clarify some of the content and conclusions.

Type
Notes
Copyright
Copyright © The American Journal of Science 

References

Becker, B. 1993 A 11,000-year German oak and pine dendrochronology for radiocarbon calibration. In Stuiver, M., Long, A. and Kra, R. S., eds. Calibration 1993. Radiocarbon 35(1): 201213.Google Scholar
Becker, B. and Kromer, B. 1986 Extension of the Holocene dendrochronology by the preboreal pine series, 8800 to 10,100 BP. In Stuiver, M. and Kra, R. S., eds., Proceedings of the 12th International Radiocarbon Conference. Radiocarbon 28(2B): 961–967.CrossRefGoogle Scholar
Braziunas, T. F. (ms.) 1990 Nature and origin of variations in late-glacial and Holocene atmospheric 14C as revealed by global carbon cycle modeling. Ph.D. dissertation, University of Washington.Google Scholar
Damon, P. E. 1987 The history of the calibration of radiocarbon dates by dendrochronology. In Aurenche, O., Evin, J. and Hours, F., eds., Proceedings of the CNRS International Symposium. BAR International Series 379, Oxford, British Archaeological Reports: 61104.Google Scholar
Damon, P. E., Lerman, J. C. and Long, A. 1978 Temporal fluctuations of atmospheric 14C: Causal factors and implications. Annual Review of Earth and Planetary Science 6: 451494.CrossRefGoogle Scholar
Damon, P. E., Cheng, S. and Linick, T. W. 1989 Fine and hyperfine structure in the spectrum of secular variations of atmospheric 14C. Radiocarbon 31(3): 704718.Google Scholar
Damon, P. E., Burr, G., Cain, W. J. and Donahue, D. J. 1992 Anomalous 11-year Δ14C cycle at high latitudes? Radiocarbon 34(2): 235238.Google Scholar
de Jong, A. F. M., Becker, B. and Mook, W. G. 1986 High-precision calibration of the radiocarbon time scale, 3930–3230 cal BC. In Stuiver, M. and Kra, R. S., eds., Proceedings of the 12th International 14C Conference. Radiocarbon 28(2B): 939–941.CrossRefGoogle Scholar
Fan, C. Y., Chen, T-M., Yun, S-X. and Dai, K-M. 1983 Radiocarbon activity variation in dated tree rings grown in Mackenzie Delta. In Stuiver, M. and Kra, R. S., eds., Proceedings of the 11th International 14C Conference. Radiocarbon 25(2): 205212.CrossRefGoogle Scholar
Fan, C. Y., Chen, T-M., Yun, S-X. and Dai, K-M. 1986 Radiocarbon activity variation in data tree rings grown in Mackenzie Delta. In Stuiver, M. and Kra, R. S., eds., Proceedings of the 12th International 14C Conference. Radiocarbon 28(2A): 300–305.Google Scholar
Jirikowic, J. L. and Kalin, R. M. 1993 A possible ENSO indicator in the spatial variation of tree-ring radiocarbon. Geophysical Research Letters 20(6): 439442.Google Scholar
Kalin, R. M., McCormac, F. G., Damon, P. E., Eastoe, C. J. and Long, A. 1995 Intercomparison of high-precision 14C measurements at the University of Arizona and the Queen's University of Belfast Radiocarbon Laboratories. Radiocarbon 37(1): 3338.Google Scholar
Kromer, B., Rhein, M., Bruns, M., Schoch-Fischer, H., Münnich, K. O., Stuiver, M. and Becker, B. 1986 Radiocarbon calibration data for the 6th to the 8th millennia BC. In Stuiver, M. and Kra, R. S., eds., Proceedings of the 12th International 14C Conference. Radiocarbon 28(2B): 954–960.CrossRefGoogle Scholar
Linick, T. W., Long, A., Damon, P. E. and Ferguson, C. W. 1986 High-precision radiocarbon dating of bristlecone pine from 6554 to 5350 BC. In Stuiver, M. and Kra, R. S., eds., Proceedings of the 12th International 14C Conference. Radiocarbon 28(2B): 943–953.Google Scholar
McCormac, F. G., Baillie, M. G. L., Pilcher, J. R. and Kalin, R. M. 1995 Location-dependent differences in the 14C content of wood and a possible solar connection. In Cook, G. T., Harkness, D. D., Miller, B. F. and Scott, E. M., eds., Proceedings of the 15th International 14C Conference. Radiocarbon 37(2): 395407.Google Scholar
Pearson, G. W., Becker, B. and Qua, F. 1993 High-precision 14C measurement of German and Irish oaks to show the natural 14C variations from 7890 to 5000 BC. In Stuiver, M., Long, A. and Kra, R. S., eds., Calibration 1993. Radiocarbon 35(1): 93104.CrossRefGoogle Scholar
Pearson, G. W., Pilcher, J. R., Baillie, M. G. L., Corbett, D. M. and Qua, F. 1986 High precision 14C measurement of Irish oaks to show the natural 14C variations from AD 1840 to 5210 BC. In Stuiver, M. and Kra, R. S., eds., Proceedings of the 12th International 14C Conference. Radiocarbon 28(2B): 911–934.Google Scholar
Pearson, G. W. and Qua, F. 1993 High-precision 14C measurement of Irish oaks to show the natural 14C variations from AD 1840–5000 BC: A correction. In Stuiver, M., Long, A. and Kra, R. S., eds., Calibration 1993. Radiocarbon 35(1): 105123.CrossRefGoogle Scholar
Pilcher, J. R., Baillie, M. G. L., Schmidt, B. and Becker, B. 1984 A 7,272 year tree-ring chronology for western Europe. Nature 312: 150152.Google Scholar
Stuiver, M. 1993 Editorial comment. In Stuiver, M., Long, A. and Kra, R. S., eds., Calibration 1993. Radiocarbon 35(1): 7385.Google Scholar
Stuiver, M. and Becker, B. 1986 High-precision decadal calibration of the radiocarbon time scale, AD 1950–2500 BC. In Stuiver, M. and Kra, R. S., eds., Proceedings of the 12th International 14C Conference. Radiocarbon 28(2B): 863–910.Google Scholar
Stuiver, M. and Becker, B. 1993 High-precision decadal calibration of the radiocarbon time scale AD 1950–6000 BC. In Stuiver, M., Long, A. and Kra, R. S., eds., Calibration 1993. Radiocarbon 35(1): 3565.Google Scholar
Stuiver, M. and Kra, R. S., eds. 1986 Calibration Issue. Proceedings of the 12th International 14C Conference. Radiocarbon 28(2B): 805–1030.Google Scholar
Stuiver, M., Long, A. and Kra, R. S., eds. 1993 Calibration 1993. Radiocarbon 35(1): 1244.Google Scholar
Stuiver, M. and Pearson, G. W. 1993 High-precision bidecadal calibration of the radiocarbon time scale, AD 1950–500 BC. In Stuiver, M., Long, A. and Kra, R. S., eds. Calibration 1993. Radiocarbon 35(1): 123.CrossRefGoogle Scholar
Stuiver, M. and Quay, P. D. 1981 Atmospheric 14C changes resulting from fossil fuel CO2 release and cosmic ray variability. Earth and Planetary Science Letters 53: 349362.Google Scholar
Suess, H. E. and Linick, T. W. 1990 The 14C record in bristlecone pine wood of the past 8000 years based on the dendrochronology of the late C. W. Ferguson. Philosophical Transactions of the Royal Society of London A330: 403412.Google Scholar
Vogel, J. C., Fuls, A., Visser, E. and Becker, B. 1993 Pretoria calibration curve for short-lived samples, 1930–3350 BC. In Stuiver, M., Long, A. and Kra, R. S., eds. Calibration 1993. Radiocarbon 35(1): 7385.Google Scholar