HR: 13:40h
AN: MR53A-01 [Abstracts]
TI: Multi-anvil High Pressure Facility at National Synchrotron Light Source: Then, Now, and Future
AU: * Wang, L
EM: Liping.Wang@sunysb.edu
AF: Mineral Physics Institute, Stony Brook University, Stony Brook, NY 11794, United States
AU: Weidner, D J
EM: Donald.Weidner@sunysb.edu
AF: Mineral Physics Institute, Stony Brook University, Stony Brook, NY 11794, United States
AU: Weidner, D J
EM: Donald.Weidner@sunysb.edu
AF: Department of Geosciences, Stony Brook University, Stony Brook, NY 11794, United States
AU: Vaughan, M T
EM: Michael.Vaughan@sunysb.edu
AF: Mineral Physics Institute, Stony Brook University, Stony Brook, NY 11794, United States
AU: Chen, J
EM: Jiuhua.Chen@sunysb.edu
AF: Mineral Physics Institute, Stony Brook University, Stony Brook, NY 11794, United States
AU: Li, B
EM: Baosheng.Li@sunysb.edu
AF: Mineral Physics Institute, Stony Brook University, Stony Brook, NY 11794, United States
AU: Liebermann, R C
EM: Robert.Liebermann@sunysb.edu
AF: Mineral Physics Institute, Stony Brook University, Stony Brook, NY 11794, United States
AU: Liebermann, R C
EM: Robert.Liebermann@sunysb.edu
AF: Department of Geosciences, Stony Brook University, Stony Brook, NY 11794, United States
AB:
Multi-anvil high pressure facility (Beamline X17B2) at National Synchrotron Light Source (NSLS) was the first of its
kind established in the United States with the support from NSF through the Center for High Pressure Research
(CHiPR, 1990 - 2002). During this period, the facility provided a fertile ground for steep growth of research on
earth materials at simultaneously high pressures and temperatures. Main areas of study included the
thermoelastic and structural properties of minerals, phase equilibria, rheology, acoustic velocities, kinetics of
phase transformations, and physical properties of melts. The rheological and acoustic measurements at high
pressures in conjunction with synchrotron were first developed at this facility, and both techniques are being
adapted today by other laboratories around the world.
Last five years has witnessed great increases in efficiency and productivity of this facility, a beneficiary of the
construction of a permanent hutch and time-sharing mechanism made possible by NSLS, and the establishment
of the Consortium for Materials Properties Research in Earth Sciences (COMPRES). While other above-
mentioned areas of research continued to grow, the rheological studies of minerals experienced fast expansion
through the use of two new high pressure deformation apparatus, the Deformation DIA (D-DIA) and the Rotational
Drickamer apparatus (RDA, led by S. Karato from Yale Univ.) Experiments are currently being performed on
various mantle minerals to derive their rheological properties. Performance of the facility will receive another
boost through the addition of a monochromatic side station jointly supported by DoD, COMPRES and NSLS, and
construction of the station is well underway.
With continued operation of COMPRES in next five years, we will see several significant additions to the large-
volume facility at NSLS: a new system for precise measurements of stress at high pressure; a 2000-ton press; D-
TCup apparatus for deformation experiments at pressures up to 20 GPa; a portable RDA that can be placed in the
current press; and the fully operational monochromatic side station. The planned new synchrotron (NSLS II) with
its supreme energy and spatial resolutions allows further enhancement of capabilities of multi-anvil high
pressure facility, and opens door for new possibilities beyond 2012.
DE: 3909 Elasticity and anelasticity
DE: 3924 High-pressure behavior
DE: 3954 X-ray, neutron, and electron spectroscopy and diffraction
DE: 3994 Instruments and techniques
DE: 5102 Acoustic properties
SC: Mineral and Rock Physics [MR]
MN: 2007 Fall Meeting