HR: 0800h
AN: MR31B-0374 [Abstracts]
TI: Sound velocities of iron sulfide at high pressure and high temperature
AU: * Liu, W
EM: weiliu3@notes.cc.sunysb.edu
AF: Mineral Physics Institute, Stony Brook University, Stony Brook, NY 11720, United States
AU: Wang, L
EM: liping.wang@sunysb.edu
AF: Mineral Physics Institute, Stony Brook University, Stony Brook, NY 11720, United States
AU: Li, B
EM: Baosheng.Li@sunysb.edu
AF: Mineral Physics Institute, Stony Brook University, Stony Brook, NY 11720, United States
AB:
Iron sulfide, FeS, is widely believed to be a possible constituent of the cores of terrestrial planets. Stoichiometric
FeS has been investigated extensively from the viewpoints of crystal structures, phase diagram, equation of state,
and electronic properties at high pressure and/or high temperature using diamond anvil cell and large volume
press apparatus. Though static compression studies have explored high pressure behavior, they provided only
indirect determination of the bulk modulus K0 and its pressure derivatives dK/dP, and no information on the
shear properties.
In this study the elastic compressional (P) and shear (S) wave velocities of FeS have been measured, for the first
time, across several successive phase transitions (FeS I, FeS II, FeS III, and FeS IV) along various P-T paths up
to 11 GPa and 723 K, using the combined state of the art ultrasonic interferometry, X-ray diffraction and X-ray
radiography method. Previous studies indicate that the Fe in FeS III is in a low-spin state, and structural phase
transition of FeS II to FeS III involves the electronic transition of Fe from a high-spin to a low-spin state. Our
measurements allow us to investigate the possible velocity changes associated with such an electronic
transition. The elastic bulk and shear moduli for other polymorphs of FeS at high pressure and high temperature
will also be presented.
DE: 3630 Experimental mineralogy and petrology
DE: 3909 Elasticity and anelasticity
DE: 3924 High-pressure behavior
DE: 5102 Acoustic properties
DE: 8124 Earth's interior: composition and state (1212, 7207, 7208, 8105)
SC: Mineral and Rock Physics [MR]
MN: 2007 Fall Meeting