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用于同时进行高压和高温衍射实验的石墨电阻加热金刚石对顶砧池

Graphite resistive heated diamond anvil cell for simultaneous high-pressure and high-temperature diffraction experiments.

作者信息

Hwang Huijeong, Bang Yoonah, Choi Jinhyuk, Cynn Hyunchae, Jenei Zsolt, Evans William J, Ehnes Anita, Schwark Iris, Glazyrin Konstantin, Gatta G Diego, Lotti Paolo, Sanloup Chrystèle, Lee Yongjae, Liermann Hanns-Peter

机构信息

Deutsches Elektronen-Synchrotron DESY, Notkestr. 85, 22607 Hamburg, Germany.

School of Earth Sciences and Environmental Engineering, Gwangju Institute of Science and Technology, 123 Cheomdan-Gwagiro, Gwangju 61005, Republic of Korea.

出版信息

Rev Sci Instrum. 2023 Aug 1;94(8). doi: 10.1063/5.0132981.

Abstract

High-pressure and high-temperature experiments using a resistively heated diamond anvil cell have the advantage of heating samples homogeneously with precise temperature control. Here, we present the design and performance of a graphite resistive heated diamond anvil cell (GRHDAC) setup for powder and single-crystal x-ray diffraction experiments developed at the Extreme Conditions Beamline (P02.2) at PETRA III, Hamburg, Germany. In the GRHDAC, temperatures up to 2000 K can be generated at high pressures by placing it in a water-cooled vacuum chamber. Temperature estimates from thermocouple measurements are within +/-35 K at the sample position up to 800 K and within +90 K between 800 and 1400 K when using a standard seat combination of cBN and WC. Isothermal compression at high temperatures can be achieved by employing a remote membrane control system. The advantage of the GRHDAC is demonstrated through the study of geophysical processes in the Earth's crust and upper mantle region.

摘要

使用电阻加热金刚石对顶砧进行的高温高压实验具有能在精确温度控制下均匀加热样品的优势。在此,我们展示了一种用于粉末和单晶X射线衍射实验的石墨电阻加热金刚石对顶砧(GRHDAC)装置的设计与性能,该装置是在德国汉堡的佩特拉三世的极端条件光束线(P02.2)上开发的。在GRHDAC中,通过将其置于水冷真空室中,可在高压下产生高达2000 K的温度。当使用立方氮化硼和碳化钨的标准座组合时,在样品位置,热电偶测量的温度估计在高达800 K时误差在±35 K以内,在800至1400 K之间时误差在+90 K以内。通过采用远程膜控制系统可实现高温下的等温压缩。通过对地壳和上地幔区域地球物理过程的研究证明了GRHDAC的优势。

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