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A 200-year coral stable oxygen isotope record from a high-latitude reef off Western Australia
Authors:H. Kuhnert  J. Pätzold  B. Hatcher  K.-H. Wyrwoll  A. Eisenhauer  L. B. Collins  Z. R. Zhu  G. Wefer
Affiliation:Fachbereich Geowissenschaften, Universit?t Bremen, Postfach 330440, D-28334 Bremen, Germany, DE
Department of Biology, Dalhousie University, Halifax, Nova Scotia, Canada B3H 4J1, CA
Department of Geology and Geography, University of Western Australia, Nedlands, W.A., 6009 Australia, AU
Geochemisches Institut, Universit?t G?ttingen, Goldschmidstr, 1, D-37077 G?ttingen, Germany, DE
School of Applied Geology, Curtin University of Technology, Bentley, W.A., 6102 Australia, AU
Abstract: A core from a coral colony of Porites lutea was analysed for stable oxygen isotopic composition*. A 200-year proxy record of sea surface temperatures from the Houtman Abrolhos Islands off west Australia was obtained from coral δ18O. At 29′S, the Houtman Abrolhos are the southernmost major reef complex of the Indian Ocean. They are located on the path of the Leeuwin Current, a southward flow of warm, tropical water, which is coupled to Indonesian throughflow. Coral δ18O primarily reflects local oceanographic and climatic variability, which is largely determined by spatial variability of the Leeuwin Current. However, coherence between coral δ18O and the current strength itself is relatively weak. Evolutionary spectral and singular spectrum analyses of coral δ18O demonstrate a high variability in spectral composition through time. Oscillations in the 5–7-y, 14–15-y, and quasi-biennial bands reflect teleconnections of local sea surface temperature (SST) to tropical Pacific climate variability. Deviations between local (coral-based) and regional (instrument) SST contain a cyclic component with a period of 15 y. Coral δ18O suggests a rise in SST by 0.6 ′C since AD 1944, consistent with available instrumental SST records. A long-term warming by 1.4 ′C since AD 1795 is inferred from the coral record. Accepted: 3 July 1998
Keywords:  Coral stable isotopes  Leeuwin current  Australia
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