HR: 17:00h
AN: S14A-01 INVITED [Abstracts]
TI: Gutenberg Lecture: Bridging the gap Between Seismology and Oceanography:
New Phenomena in the Background Seismic Wavefield
AU: * Romanowicz, B A
EM: barabra@seismo.berkeley.edu
AF: Department of Earth and Planetary Science, University of California at
Berkeley, Berkeley, CA 94720
United States
AB:
It has long been known (e.g. Longuet-Higgins, 1950) that the source of
the microseismic noise peak, which pervades seismic records in the period
range 1-10 sec, is generated by complex non-linear interactions between
ocean waves and the seafloor. A less obvious signal, discovered six years
ago by Japanese scientists deep in the longer period noise of land-based
seismic stations ($>150$ sec), is that of Earth's continually excited free
oscillations. This "hum" now appears to also be generated through a non-linear
coupling mechanism involving the atmosphere (winds), the ocean
(infragravity waves) and the solid earth.
The realization that a large portion of the earth's seismic noise, over a wide
frequency band, is made of Rayleigh waves has opened up new horizons for
the study of earth's crust and upper mantle 3D structure, as well as other
non-tectonic phenomena such as the motions of glaciers. I will
also argue that the deployment of arrays of ocean observatories comprising
sensors recording motions from the seafloor through the entire water column
is a necessary next step, complementing land and space-based observations,
to further our understanding of this wide class of intriguing atmosphere/ocean/solid
earth interactions.
DE: 7260 Theory and modeling
DE: 7203 Body wave propagation
DE: 7207 Core and mantle
DE: 7218 Lithosphere and upper mantle
SC: Seismology [S]
MN: 2004 AGU Fall Meeting