HR: 1340h
AN: PP33B-1280 [Abstracts]
TI: 10-Be Constraints on the Timing of the Last Glacial Maximum and Deglaciation in the Northern Peruvian Andes
AU: * Shakun, J D
EM: shakunj@geo.oregonstate.edu
AF: Oregon State University, Department of Geosciences, Corvallis, OR 97333, United States
AU: Clark, P U
EM: clarkp@geo.oregonstate.edu
AF: Oregon State University, Department of Geosciences, Corvallis, OR 97333, United States
AU: Marcott, S A
EM: marcotts@geo.oregonstate.edu
AF: Oregon State University, Department of Geosciences, Corvallis, OR 97333, United States
AU: Brook, E J
EM: brooke@geo.oregonstate.edu
AF: Oregon State University, Department of Geosciences, Corvallis, OR 97333, United States
AU: Caffee, M W
EM: mcaffee@physics.purdue.edu
AF: Purdue University, Department of Physics, West Lafayette, IN 47904, United States
AB:
Eighteen 10Be ages were determined on quartzite boulders from two latest Pleistocene moraines in the northern
Peruvian Andes at 7°S. Pleistocene moraines in this area are only a few hundred meters below the highest
summits and represent small glaciers sensitive to climate change. A moraine corresponding to the local Last
Glacial Maximum (LGM) yields a mean age of 19.2 +/- 1.1 10Be ka using the scaling of Lal (1991) and the
production rate of Stone (2000). This age agrees fairly well with the onset of deglaciation inferred from other
records in the tropical Andes including 10Be dating of moraines in the Cordillera Blanca, glaciogenic sediment
input into Lakes Junin and Titicaca, and Huascaran d18O, as well as the initiation of warming seen in many
marine records throughout the tropics at ~19 ka. These data do not seem to support an early local LGM in the
tropical Andes, although ongoing cosmogenic work at our field site seeks to better clarify this issue.
A deglacial moraine in an adjacent valley has a mean age of 15.8 +/- 1.4 10Be ka and best represents the timing
of ice withdrawal from this region. Numerous other moraines throughout Peru and northern Bolivia have also
been dated to ~15 10Be ka (Farber et al, 2005; Smith et al, 2005). Other records from the southern tropics
indicate drying at this time, perhaps in response to a northward shift of the intertropical convergence zone
associated with a resumption of thermohaline circulation, which may explain this deglacial event. While Schaefer
et al. (2006) found a near-synchronous termination of the LGM in the mid-latitudes of both the Northern and
Southern Hemispheres at ~17 10Be ka, the ~15 10Be ka age of moraines from the tropical Andes may indicate
an asynchronous onset of the last deglaciation between the low and mid-latitudes.
DE: 0720 Glaciers
DE: 1105 Quaternary geochronology
DE: 1150 Cosmogenic-nuclide exposure dating (4918)
DE: 1650 Solar variability (7537)
DE: 9360 South America
SC: Paleoceanography and Paleoclimatology [PP]
MN: 2007 Fall Meeting