HR: 1340h
AN: V13D-0570 [Abstracts]
TI: Negative Magnetic Anomalies Observed in the Central West Antarctica (CWA) Aerogeophysical Survey Over
the West Antarctic Ice Sheet (WAIS), Whose Sources are Volcanic Centers (e.g. Mt Resnik) at the Base of
the ice >780 Ka
AU: * Behrendt, J C
EM: behrendj@colorado.edu
AF: INSTAAR, University of Colorado, Boulder, CO 80309-0450
United States
AU: * Behrendt, J C
EM: behrendj@colorado.edu
AF: USGS, Federal Center, Denver, CO 80225
United States
AU: Finn, C A
EM: cfinn@usgs.gov
AF: USGS, Federal Center, Denver, CO 80225
United States
AU: Morse, D L
EM: morse@utig.ig.utexas.edu
AF: UTIG, University of Texas, Austin, TX 78759 8500
United States
AU: Blankenship, D D
EM: blank@utig.ig.utexas.edu
AF: UTIG, University of Texas, Austin, TX 78759 8500
United States
AB:
Analysis of a block of coincident aeromagnetic and radar ice-sounding data (from the CWA aerogeophysical survey) over the
WAIS reveals ~1000 50->1000-nT, shallow -source, ``volcanic" magnetic anomalies, interpreted as caused by late
Cenozoic alkaline magmatism associated with the West Antarctic rift system (WR). About 400 of these anomalies (conservatively
selected) have topographic expression at the bed of the WAIS; >80% of these topographic features have <200 m bed
relief. There are ~100 short-wavelength, steep-gradient, negative magnetic anomalies observed in the CWA survey, or
~10% of the ~1000 ``volcanic" anomalies. These negative anomalies indicate volcanic activity during a time of magnetic
field reversal from normal to reversed polarity at least as old as 780 Ka (the Brunes-Matuyama reversal). The sources of
~18 of the anomalies, half concentrated in the area of the WAIS divide, have high bed-elevation (above sea level after
ice removal and glacial rebound), very magnetic topography of high bed relief, up to 2 km. Five of these peaks have
associated negative magnetic anomalies. One of the high topographic features, Mt. Resnik, marked by a complex negative
anomaly, is a conical peak 300 m below the surface of the WAIS, and has ~2 km topographic relief. We interpret a
magnetic model fit to this anomaly as comprising reversely magnetized (in the present field direction), 0.5-2.5-km thick
volcanic flows at the summit overlying normally magnetized flows. Published models (1996) reported for the Hut Point anomaly,
at Ross Island, Antarctica, a similar anomaly to Mt. Resnik, also required both normal and reversed magnetizations
correlated with drill holes into dated volcanic flows (also part of the late Cenozoic WR) crossing the Brunhes-Matuyama
boundary (780 Ka). Because of their form similar to exposed volcanoes in the WAIS area with edifices primarily comprising
subaerially-erupted, very magnetic volcanic flows, which have resisted glacial erosion, Behrendt et al. (2004) interpreted
that these 18 high-topograpy, high-relief sources are subglacial volcanoes (including the five >780 Ka) erupted subaerially
during a period when the WAIS was absent.
DE: 4207 Arctic and Antarctic oceanography (9310, 9315)
DE: 4540 Ice mechanics and air/sea/ice exchange processes (0700, 0750, 0752, 0754)
DE: 8100 TECTONOPHYSICS
DE: 8400 VOLCANOLOGY
SC: Volcanology, Geochemistry, Petrology [V]
MN: Fall Meeting 2005