Research Article| January 01, 2000 High-Pressure Single-Crystal Techniques Ronald Miletich; Ronald Miletich Laboratory for Crystallography, ETHZ Zürich, CH-8092 Zürich, Switzerland Search for other works by this author on: GSW Google Scholar David R. Allan; David R. Allan Department of Physics and Astronomy, The University of Edinburgh, Edinburgh EH9 3JZ, Scotland Search for other works by this author on: GSW Google Scholar Werner F. Kuhs Werner F. Kuhs Mineralogisch-Kristallographisches Institut, Universität Göttingen, D-37077 Göttingen, Germany Search for other works by this author on: GSW Google Scholar Author and Article Information Ronald Miletich Laboratory for Crystallography, ETHZ Zürich, CH-8092 Zürich, Switzerland David R. Allan Department of Physics and Astronomy, The University of Edinburgh, Edinburgh EH9 3JZ, Scotland Werner F. Kuhs Mineralogisch-Kristallographisches Institut, Universität Göttingen, D-37077 Göttingen, Germany Publisher: Mineralogical Society of America First Online: 09 Mar 2017 © 2000 Mineralogical Society of America Reviews in Mineralogy and Geochemistry (2000) 41 (1): 445–519. https://doi.org/10.2138/rmg.2000.41.14 Article history First Online: 09 Mar 2017 Cite View This Citation Add to Citation Manager Share Icon Share Facebook Twitter LinkedIn Email Permissions Search Site Citation Ronald Miletich, David R. Allan, Werner F. Kuhs; High-Pressure Single-Crystal Techniques. Reviews in Mineralogy and Geochemistry 2000;; 41 (1): 445–519. doi: https://doi.org/10.2138/rmg.2000.41.14 Download citation file: Ris (Zotero) Refmanager EasyBib Bookends Mendeley Papers EndNote RefWorks BibTex toolbar search Search Dropdown Menu toolbar search search input Search input auto suggest filter your search All ContentBy SocietyReviews in Mineralogy and Geochemistry Search Advanced Search The development of apparatus to maintain materials at high hydrostatic pressure has been an active area of research for many years. From the pioneering work of Bridgman, during the early part of this century (Bridgman 1971), until the late 1960s, massive hydraulicly driven Bridgman-anvil and piston-cylinder devices dominated high-pressure science. Although there were later improvements in design, such as multi-anvil devices, it was not until the advent of the gasketed diamond-anvil cell, in the mid 1960s, that high-pressure studies were possible in non-specialized laboratories. Diamond has remarkable properties; not only is it the hardest known material it is... You do not have access to this content, please speak to your institutional administrator if you feel you should have access.
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Miletich et al. (2000) studied this question.