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一种用于在高温高压条件下合成和测定冰 VII 单晶弹性的外部加热金刚石对顶砧室。

An Externally-Heated Diamond Anvil Cell for Synthesis and Single-Crystal Elasticity Determination of Ice-VII at High Pressure-Temperature Conditions.

作者信息

Lai Xiaojing, Zhu Feng, Zhang Jin S, Zhang Dongzhou, Tkachev Sergey, Prakapenka Vitali B, Chen Bin

机构信息

Gemmological Institute, China University of Geosciences (Wuhan); Hawai'i Institute of Geophysics and Planetology, University of Hawai'i at Mānoa.

Hawai'i Institute of Geophysics and Planetology, University of Hawai'i at Mānoa.

出版信息

J Vis Exp. 2020 Jun 18(160). doi: 10.3791/61389.

Abstract

The externally-heated diamond anvil cell (EHDAC) can be used to generate simultaneously high-pressure and high-temperature conditions found in Earth's and planetary interiors. Here we describe the design and fabrication of the EHDAC assemblies and accessories, including ring resistive heaters, thermal and electrical insulating layers, thermocouple placement, as well as the experimental protocol for preparing the EHDAC using these parts. The EHDAC can be routinely used to generate megabar pressures and up to 900 K temperatures in open air, and potentially higher temperatures up to ~1200 K with a protective atmosphere (i.e., Ar mixed with 1% H2). Compared with a laser-heating method for reaching temperatures typically >1100 K, external heating can be easily implemented and provide a more stable temperature at ≤900 K and less temperature gradients to the sample. We showcased the application of the EHDAC for synthesis of single crystal ice-VII and studied its single-crystal elastic properties using synchrotron-based X-ray diffraction and Brillouin scattering at simultaneously high-pressure high-temperature conditions.

摘要

外部加热金刚石对顶砧室(EHDAC)可用于同时产生地球和行星内部存在的高压和高温条件。在此,我们描述了EHDAC组件及附件的设计与制造,包括环形电阻加热器、热绝缘层和电绝缘层、热电偶布置,以及使用这些部件制备EHDAC的实验方案。EHDAC可常规用于在露天环境中产生兆巴级压力和高达900 K的温度,在有保护气氛(即氩气与1%氢气混合)的情况下,潜在温度可高达约1200 K。与通常用于达到高于1100 K温度的激光加热方法相比,外部加热易于实现,在≤900 K时能提供更稳定的温度,且样品的温度梯度更小。我们展示了EHDAC在合成单晶冰-VII中的应用,并在同时的高压高温条件下,使用基于同步加速器的X射线衍射和布里渊散射研究了其单晶弹性性质。

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