Immoor J, Marquardt H, Miyagi L, Speziale S, Merkel S, Schwark I, Ehnes A, Liermann H-P
Bayerisches Geoinstitut BGI, University of Bayreuth, 95440 Bayreuth, Germany.
Department of Earth Sciences, University of Oxford, Oxford OX1 3AN, United Kingdom.
Rev Sci Instrum. 2020 Apr 1;91(4):045121. doi: 10.1063/1.5143293.
We present an improved setup for the experimental study of deformation of solids at simultaneous high pressures and temperatures by radial x-ray diffraction. This technique employs a graphite resistive heated Mao-Bell type diamond anvil cell for radial x-ray diffraction in combination with a water-cooled vacuum chamber. The new chamber has been developed by the sample environment group at PETRA III and implemented at the Extreme Conditions Beamline P02.2 at PETRA III, DESY (Hamburg, Germany). We discuss applications of the new setup to study deformation of a variety of materials, including ferropericlase, calcium perovskite, bridgmanite, and tantalum carbide, at high-pressure/temperature.
我们展示了一种经过改进的装置,用于通过径向X射线衍射对固体在同时处于高压和高温条件下的变形进行实验研究。该技术采用了一个石墨电阻加热的毛-贝尔型金刚石对顶砧细胞,用于径向X射线衍射,并结合一个水冷真空室。这个新的真空室是由PETRA III的样品环境小组开发的,并在德国汉堡DESY的PETRA III的极端条件光束线P02.2上得以应用。我们讨论了这种新装置在研究包括铁方镁石、钙钛矿、布里奇曼石和碳化钽在内的多种材料在高压/高温下的变形方面的应用。