Thomas S Duffy 2005 Rep. Prog. Phys. 68 1811 doi:10.1088/0034-4885/68/8/R03
Thomas S Duffy
Show affiliationsThe combination of synchrotron x-ray facilities with high-pressure methods provides new experimental tools for addressing geophysical problems relevant to understanding the interior of the Earth and other planets. Among the important geophysical questions related to the Earth's silicate mantle are the origin of seismic discontinuities in the upper mantle, the rheological properties of mantle minerals and their influence on dynamic flow in the Earth, and the nature of the core–mantle boundary region. In the case of the Earth's core, key questions are centred on the identity of the light elements of the core and their effect on energetics and thermodynamic properties, the melting curve of iron and its alloys and the origin of seismic anisotropy in the inner core.
Both new and established high-pressure synchrotron methods applied to the diamond anvil cell and large-volume apparatus are surveyed. Advances in synchrotron capabilities have been accompanied by new innovations in high-pressure technology. X-ray diffraction techniques are mature but continued improvements are leading to expanded pressure–temperature coverage and better ability to recover crystallographic details. Diffraction and absorption studies of the properties of liquids of silicate and iron alloy composition have expanded in response to new capabilities. Recently, methods for inelastic scattering and nuclear resonance probes have been developed at high pressures and these provide constraints on vibrational, electronic and magnetic properties, which were previously unattainable.
93.85.De Exploration of continental structures
91.35.Gf Structure of the crust and upper mantle
91.35.Ed Structure of the Earth's interior below the upper mantle
Issue 8 (August 2005)
Received 19 April 2005
Published 5 July 2005
Thomas S Duffy 2005 Rep. Prog. Phys. 68 1811
K Esfarjani and Y Kawazoe 1995 J. Phys.: Condens. Matter 7 7217
H Gopalkrishna Gadiyar et al 2003 J. Phys. A: Math. Gen. 36 L109
D J Littler and E E Lockett 1953 Proc. Phys. Soc. A 66 700
Tamara Bechtold et al 2005 J. Micromech. Microeng. 15 1205
J H Williamson 1967 Br. J. Appl. Phys. 18 317
J Ancsin and K D Hill 1994 Metrologia 30 507
Yick Chuen Chan et al 2006 J. Micromech. Microeng. 16 699
V D Huynh 1992 Metrologia 29 295
Susanne Picard et al 2007 Metrologia 44 294