HR: 09:00h
AN: PP41D-05 [Abstracts]
TI: 400 ka Eccentricity Cycle Modulation of the SPICE Carbon Isotope Excursion on Both Sides of the
Cambrian Earth
AU: * Runnegar, B
EM: Bruce.Runnegar@nasa.gov
AF: NASA Astrobiology Institute, Ames Research Center, Moffett Field, CA 94035
United States
AU: Varadi, F
EM: varadi@atmos.ucla.edu
AF: Institute of Geophysics and Planetary Physics, University of California, Los Angeles, CA 90095
United States
AU: Saltzman, M R
EM: saltzman.11@osu.edu
AF: Department of Geological Sciences, Ohio State University, Columbus, OH 43210
United States
AB:
The Steptoean Positive Carbon Isotope Excursion (SPICE) uniquely defines a 2-3 million-year interval of Cambrian time that
can be recognized globally (Saltzman et al., JSR 74, 366-377, 2004). Well-sampled sections in Nevada (Egan Range) and
Australia (DDH Mt Whelan 1) record both the +5 permil excursion in δ13C and higher frequency modulations that
have an amplitude of 1 permil and a wavelength of about 20 meters. As the duration of the SPICE event is constrained by
interpolation among available U-Pb ages, the higher frequency modulations can be plausibly associated with the 400 ka cycle
in the eccentricity of the Earth's orbit. Long (600 Ma) numerical integrations of solar system dynamics, together with
theoretical considerations, make it clear that the 400 ka cyclicity is metronomic, not chaotic. Therefore, the 400 ka signal
in the Cambrian carbon isotope records may be used to: (1) provide an accurate duration for the Spice excursion and for
biological and geological events within it; (2) demonstrate the existence of long-term climatic variability during the
Cambrian that was recorded by the oceanic carbon cycle; and (3) assist with understanding how trivial changes in Earth's
eccentricity can be responsible for amplified responses in the behavior of Earth's climate and its biogeochemical proxies.
DE: 0473 Paleoclimatology and paleoceanography (3344, 4900)
DE: 1041 Stable isotope geochemistry (0454, 4870)
DE: 4910 Astronomical forcing
SC: Paleoceanography and Paleoclimatology [PP]
MN: Fall Meeting 2005