HR: 0800h
AN: MR31A-0120 [Abstracts]
TI: Brillouin Scattering and Synchrotron X-Ray Measurements at GSECARS, Advanced Photon Source:
Simultaneous Measurements of Sound Velocities and Density
AU: * Bass, J D
EM: jaybass@uiuc.edu
AF: University of Illinois Urbana-Champaign, Geology Department
1301 W Green St, Urbana, IL 61801
United States
AU: Sinogeikin, S V
EM: sinogeik@uiuc.edu
AF: University of Illinois Urbana-Champaign, Geology Department
1301 W Green St, Urbana, IL 61801
United States
AU: Lakshtanov, D
EM: lakshtan@uiuc.edu
AF: University of Illinois Urbana-Champaign, Geology Department
1301 W Green St, Urbana, IL 61801
United States
AU: Prakapenka, V
EM: prakapenka@cars.uchicago.edu
AF: GSECARS, Dept of Geophysical Sciences
University of Chicago, Chicago, IL 60637
United States
AU: Shen, G
EM: shen@cars.uchicago.edu
AF: GSECARS, Dept of Geophysical Sciences
University of Chicago, Chicago, IL 60637
United States
AB:
A Brillouin spectrometer have been installed and successfully tested at the GSECARS Sector 13 (BMD line) of the Advanced
Photon Source (APS). It is now possible to perform simultaneous measurements of density (by x-ray diffraction) and sound
velocities (by Brillouin scattering) on transparent single crystal and polycrystalline materials at high pressure and
temperatures. This allows the determination of an absolute pressure scale. The equation of state and acoustic velocities and,
hence, elastic moduli of materials as a function of pressure and temperature can now be determined without resort to a
secondary pressure standard, such as the ruby fluorescence scale.
We describe here the design of the system and the first experimental results obtained from this unique facility. Some of the
important design characteristics for the system are: 1) it is user-friendly, and a general user can operate the system
without being an expert. 2) it requires minimal set-up time and does not require frequent alignment of the optics; 3) all
control and adjustment of optics normally performed during a Brillouin experiment can be performed from outside the hutch; 4)
it is flexible with respect to sample position and compatible with powder and single-crystal x-ray diffraction techniques,
while not interfering with the other experimental techniques used on the beamline.
We have measured a single crystal elasticity of NaCl (B1) and MgO to 30 GPa, and aggregate velocities and elastic moduli of
NaCl (B2) to over 70 GPa. High P and T measurements were also performed, demonstrating the potential of this system for PVT
equations of state measurements over a broad range of conditions.
DE: 3909 Elasticity and anelasticity
DE: 3919 Equations of state
DE: 3924 High-pressure behavior
DE: 3954 X-ray, neutron, and electron spectroscopy and diffraction
DE: 3994 Instruments and techniques
SC: Mineral and Rock Physics [MR]
MN: Fall Meeting 2005