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Tandem Accelerator Measurements of 10Be Deposition Rates

Published online by Cambridge University Press:  18 July 2016

DE Nelson
Affiliation:
Archaeology and Chemistry Departments, Simon Fraser University, Burnaby, British Columbia, Canada
R G Korteling
Affiliation:
Archaeology and Chemistry Departments, Simon Fraser University, Burnaby, British Columbia, Canada
J R Southon*
Affiliation:
Archaeology and Chemistry Departments, Simon Fraser University, Burnaby, British Columbia, Canada
J S Vogel*
Affiliation:
Archaeology and Chemistry Departments, Simon Fraser University, Burnaby, British Columbia, Canada
I Nowikow*
Affiliation:
Archaeology and Chemistry Departments, Simon Fraser University, Burnaby, British Columbia, Canada
T L Ku
Affiliation:
Department of Geological Sciences, University of Southern California, Los Angeles
Masashi Kusakabe
Affiliation:
Department of Geological Sciences, University of Southern California, Los Angeles
J L Reyss*
Affiliation:
Department of Geological Sciences, University of Southern California, Los Angeles
*
Also: Department of Physics, McMaster University, Hamilton, Ontario, Canada
Also: Department of Physics, McMaster University, Hamilton, Ontario, Canada
Also: Department of Physics, McMaster University, Hamilton, Ontario, Canada
∗∗ Permanent address: Centre des Faibles Radioactivités, 91190 Gif-sur-Yvette, France
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Abstract

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A Tandem Van de Graaff accelerator has been modified for use in the direct measurement of natural abundances of 10Be and 14C. A description of the system is given and some 10Be results on oceanographic samples are discussed.

Type
VIII. Technical Aspects of Accelerator Mass Spectrometry
Copyright
Copyright © The American Journal of Science 

References

Ciesielski, PF, Ledbetter, MT, and Ellwood, BB, 1982, The development of Antarctic glaciation and the Neogene paleo-environment of the Maurice Ewing Bank: Marine Geol, v 46, p 151.CrossRefGoogle Scholar
Ku, TL, Kusakabe, M, Nelson, DE, Southon, J, Korteling, RG, Vogel, J, and Nowikow, I, 1982, Constancy of oceanic deposition of 10Be as recorded in Mn crusts: Nature v 299, p 240242.Google Scholar
Lobb, DE, Southon, JR, Nelson, DE, Wiesehahn, W, and Korteling, RG, 1980, An ion injection system for use in tandem accelerator radioisotope dating devices: Nuclear Instruments Methods, v 179 p 171180.Google Scholar
Morley, JJ and Hays, JD, 1981, Towards a high-resolution, global, deep-sea chronology for the last 750,000 years: Earth Planetary Sci Letters, v 53, p 279295.CrossRefGoogle Scholar
Raisbeck, GM, Yiou, F, Fruneau, M, Loiseaux, JM, Lieuvin, M, Ravel, JC, and Lorius, C, 1981, Cosmogenic 10Be concentrations in Antarctic ice during the past 30,000 years: Nature, v 292, p 825826.Google Scholar
Reyss, J-L, Yokoyama, Y, and Guichard, F, 1981, Production cross-sections of 26Al, 22Na, 7Be from argon and of 10Be, 7Be from nitrogen: implications for production rates of 26Al and 10Be in the atmosphere: Earth Planetary Sci Letters, v 53, p 203210.CrossRefGoogle Scholar
Southon, JR, Vogel, JS, Nowikow, I, Nelson, DE, and Korteling, RG, 1983, The measurement of 10Be concentrations with a Tandem accelerator: Nuclear Instruments Methods, in press.Google Scholar