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Practical effects of pressure-transmitting media on neutron diffraction experiments using Paris-Edinburgh presses

机译:压力传递介质对使用巴黎-Edinburgh媒体中子衍射实验的实际效果

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摘要

To understand the practical effects of pressure-transmitting media (PTM) on neutron diffraction using Paris-Edinburgh presses, diffraction patterns of MgO were collected to approximately 20 GPa using PTMs of Pb, AgCl, 4:1 methanol-ethanol (ME) mixture with and without heating, N-2, and Ar. Hydrostaticity in the sample chamber estimated from the MgO 220 peak width improves in the order of Pb, AgCl, Ar, ME mixture, N-2, and the heated ME mixture. Unlike previous results using diamond anvil cells, the unheated ME mixture is superior to Ar even after freezing, probably due to the cup on the anvil face. Considering these results and the sizable coherent scattering of Ne, which would show good hydrostaticity, we conclude that the ME mixture (preferably the heated one) is the best PTM in neutron experiments up to 20 GPa, while Ar can be substituted when a sample is reactive to alcohols.
机译:要了解使用巴黎爱丁兵的压力传输介质(PTM)对中子衍射对中子衍射的实际效果,使用PB,AgCl,4:1甲醇 - 乙醇(ME)混合物的PTM收集MgO的衍射模式至约20GPa。 没有加热,N-2和AR。 从MgO 220峰宽估计的样品室中的水压性达到Pb,AgCl,Ar,Me混合物,N-2和加热的ME混合物的顺序。 与使用金刚石砧座细胞的先前结果不同,即使在冷冻后,加热的ME混合物也优于AR,可能是由于砧座面上的杯子。 考虑到这些结果和Ne的相当相干散射,这将显示出良好的静水性,我们得出结论,ME混合物(优选加热的一个)是最高可达20gPa的中子实验中最佳PTM,而AR可以在样品时被取代 反应醇。

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