HR: 1330h
AN: PP42A-0869 [PDF]
TI: Paleomagnetic Calibration of Radiocarbon Chronologies: Synchronization of High-Resolution Holocene
Marine Sediment Records Between North Iceland and East Greenland
AU: Jennings, A E
EM: Anne.Jennings@colorado.edu
AF: INSTAAR, University of Colorado, Boulder, CO 80309-0450
AU: Dunhill, G
EM: Gita.Dunhill@colorado.edu
AF: INSTAAR, University of Colorado, Boulder, CO 80309-0450
AU: * Stoner, J S
EM: Joseph.Stoner@colorado.edu
AF: INSTAAR, University of Colorado, Boulder, CO 80309-0450
AU: Andrews, J T
EM: John.T.Andrews@colorado.edu
AF: INSTAAR, University of Colorado, Boulder, CO 80309-0450
AU: Kristjansdottir, G B
EM: gbk@colorado.edu
AF: INSTAAR, University of Colorado, Boulder, CO 80309-0450
AU: Hardadottir, J
EM: jha@os.is
AF: National Energy Authority, Grensasvegur 9, Reykjavik, 108
Iceland
AB:
Under many circumstances radiocarbon chronologies are insufficient to test the phase relations among centennial scale
paleoclimate records. New paleomagnetic observations indicate that the geomagnetic field undergoes rapid changes over large
spatial scales. We intend to test whether paleomagnetic records constrained by radiocarbon dating can provide sufficient
stratigraphic control to secure centennial scale correlations. To do this we examine high resolution carbonate, 14C and
paleomagnetic records from two long IMAGES cores from proximal geographic locations, but contrasting oceanographic settings.
MD99-2269 (Lat. 66.37.53 N, Long. 23.51.16 W, water depth 365 m, length 2530 cm) was taken from a trough on the North Iceland
Shelf. MD99-2322 (Lat. 67.08.18 N, Long. 30.49.67 W, water depth 714 m, length 2635 cm) was collected from a trough on the
East Greenland margin. Both cores are well dated with more than 15 AMS 14C dates within the Holocene in each and
sedimentation rates range from 1 to 3 m/kyr. An additional tie point is provided by the Saksunarvatn tephra with an age of
10.18 cal ka. The total carbonate content is interpreted as a proxy for productivity throughout the water column and
reflects the intensity of influx of North Atlantic waters to the coring sites. The carbonate records from both cores show
remarkable broad similarities at the millennial scale suggesting a common response to ocean circulation changes. However,
the phase relations of distinct centennial scale variability observed in both cores is uncertain. Paleomagnetic measurements
made on u-channel samples from these cores provide high quality paleomagnetic secular variation records. Distinct
similarities are observed between inclination and declination features with initial results indicating that refinement of
radiocarbon based correlations are possible.
DE: 1522 Paleomagnetic secular variation
DE: 3344 Paleoclimatology
DE: 9315 Arctic region
SC: Paleoceanography and Paleoclimatology [PP]
MN: 2003 Fall Meeting