HR: 1340h
AN: DI53A-1102 [Abstracts]
TI: Elastic Moduli of Single-Crystal Orthoenstatite From Room Temperature to 1450 K
AU: Davis, M G
EM: mgdavis@apu.edu
AF: Department of Mathematics and Physics, Azusa Pacific University, 901 E. Alosta Ave.,
Azusa, CA 91702-7000,
AU: * Isaak, D G
EM: disaak@apu.edu
AF: Department of Mathematics and Physics, Azusa Pacific University, 901 E. Alosta Ave.,
Azusa, CA 91702-7000,
AU: * Isaak, D G
EM: disaak@apu.edu
AF: Institute of Geophysics and Planetary Physics, University of California, 405 Hilgard Ave.,
Los Angeles, CA 90095-1567,
AU: Gwanmesia, G D
EM: ggwanmesia@desu.edu
AF: Department of Physics and Pre-Engineering, 1200 DuPont Highway, Dover, DE 19901,
AB:
Orthopyroxene [(Mg,Fe)2Si2O6] is commonly considered to be one of the four major minerals in
Earth's upper mantle. Thus, data on the elastic properties of orthopyroxene over wide ranges of temperature and
pressure are necessary to develop reliable models of the composition and structure of the upper mantle. New
elasticity data are provided on the nine independent adiabatic elastic moduli of orthoenstatite (Mg end-member
orthopyroxene) from room temperature to 1450 K at ambient pressure. These data were obtained using the
resonant ultrasound spectroscopy (RUS) with a natural single-crystal specimen; they extend by 380 kelvin the
temperature range for which the elastic moduli of single-crystal orthoenstatite have previously been reported.
Broad agreement in the temperature dependences of the nine Cij's is found when comparing our results
with those from a Brillouin spectroscopy study of orthoenstatite up to 1073 K (Jackson et al., PEPI, 161, 1-
12, 2007). An earlier report (Jackson et al., Am. Mineral., 89, 239-245, 2004) identified marked non-linear
temperature effects in the C33 and C55 moduli and correlated this nonlinearity to high-temperature
mode softening in orthoenstatite at high temperature. Similar non-linear effects in the C33 and C55 are
seen in the current RUS experiments and are carefully documented up to 1450 K in intervals of 25 kelvin. The
current RUS study also reveals conspicuous non-linear trends in the temperature dependences of two of the
three off-diagonal moduli, C13 and C23, above 1000 K. These results are interpreted in terms of the
high-temperature isotropic properties of orthoenstatite, and their impact on our understanding of the properties of
Earth's upper mantle is discussed.
DE: 3909 Elasticity and anelasticity
DE: 3919 Equations of state
DE: 5460 Physical properties of materials
DE: 8124 Earth's interior: composition and state (1212, 7207, 7208, 8105)
SC: Study of the Earth's Deep Interior [DI]
MN: 2007 Fall Meeting