HR: 1340h
AN: GP23A-0163 [Abstracts]
TI: A phenomenological model of multidomain behavior during Thellier paleointensity experiments
AU: * Leonhardt, R
EM: leon@geophysik.uni-muenchen.de
AF: Department of Earth and Environmental Sciences, Institute of Geophysics
Theresienstr. 41, Munich, 80333
Germany
AU: Krasa, D
EM: david@geophysik.uni-muenchen.de
AF: Department of Earth and Environmental Sciences, Institute of Geophysics
Theresienstr. 41, Munich, 80333
Germany
AU: Coe, R
EM: rcoe@emerald.ucsc.edu
AF: Earth Sciences Department, University of California
1156 High Str., Santa Cruz, CA 95064
United States
AB:
The most commonly used method for paleointensity determination,
the Thellier method, requires the absence of multidomain magnetic
behavior. The influence of multidomain remanence on paleointensity
determination and its recognition during the experiment are,
however, only partially understood. Here, we present a
phenomenological model of TRM acquisition and its application to
the Thellier experiment. This model is used to investigate, beside
other multidomain characteristics, the effect of pTRM$^*$-tails.
Furthermore, the appropriateness of typically applied checks
during paleointensity determination like alteration checks,
pTRM$^*$-tail checks and additivity checks is scrutinized. It is
shown that pTRM$^*$-tails significantly affect the shape of the
Arai diagram. Concave curvature of the Arai plot for samples
containing multidomain particles is related to remanences with
unblocking temperatures below their respective blocking
temperatures. pTRM$^*$-tails, however, which affect unblocking
temperatures above the respective blocking temperatures, lead to a
convex shape. An overlap of both convex and concave
characteristics can produce s-shaped Arai diagrams.
The effect of pTRM$^*$-tails is strongly dependent on the angle
and intensity difference between applied field and NRM of the
sample. The commonly used in-field alteration check is biased by
pTRM$^*$-tails and shows deviations from the expected value even
if alteration is absent. pTRM$^*$-tail checks show the presence of
tails and thus give evidence for multidomain behavior, only if the
laboratory field is applied in a different direction than the NRM.
The larger the angle between NRM and laboratory field, the larger
the value of the pTRM$^*$-tail check. A new method for calculation
of the pTRM$^*$-tail check is proposed which accounts for such
angular difference, as well as intensity differences. Conducting
the Thellier experiment with alteration checks, pTRM$^*$-tail
checks, and additivity checks at an angle between NRM and
laboratory field $> 0$, provides the possibility to unequivocally
identify multidomain bias.
DE: 1521 Paleointensity
DE: 1540 Rock and mineral magnetism
SC: Geomagnetism and Paleomagnetism [GP]
MN: 2004 AGU Fall Meeting