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用于金刚石对顶砧低温实验的压力传递介质评估。

Evaluations of pressure-transmitting media for cryogenic experiments with diamond anvil cell.

作者信息

Tateiwa Naoyuki, Haga Yoshinori

机构信息

Advanced Science Research Center, Japan Atomic Energy Agency, Tokai, Naka, Ibaraki 319-1195, Japan.

出版信息

Rev Sci Instrum. 2009 Dec;80(12):123901. doi: 10.1063/1.3265992.

Abstract

The fourteen kinds of pressure-transmitting media were evaluated by the ruby fluorescence method at room temperature, 77 K using the diamond anvil cell (DAC) up to 10 GPa in order to find appropriate media for use in low temperature physics. The investigated media are a 1:1 mixture by volume of Fluorinert FC-70 and FC-77, Daphne 7373 and 7474, NaCl, silicon oil (polydimethylsiloxane), Vaseline, 2-propanol, glycerin, a 1:1 mixture by volume of n-pentane and isopentane, a 4:1 mixture by volume of methanol and ethanol, petroleum ether, nitrogen, argon, and helium. The nonhydrostaticity of the pressure is discussed from the viewpoint of the broadening effect of the ruby R(1) fluorescence line. The R(1) line basically broadens above the liquid-solid transition pressure at room temperature. However, the nonhydrostatic effects do constantly develop in all the media from the low-pressure region at low temperature. The relative strength of the nonhydrostatic effects in the media at the low temperature region is discussed. The broadening effect of the ruby R(1) line in the nitrogen, argon, and helium media are significantly small at 77 K, suggesting that the media are more appropriate for cryogenic experiments under high pressure up to 10 GPa with the DAC. The availability of the three media was also confirmed at 4.2 K.

摘要

为了找到适用于低温物理的介质,在室温、77 K下,使用金刚石对顶砧(DAC)在高达10 GPa的压力下,通过红宝石荧光法对14种压力传递介质进行了评估。所研究的介质包括按体积比1:1混合的氟化物FC - 70和FC - 77、达芬7373和7474、氯化钠、硅油(聚二甲基硅氧烷)、凡士林、2 - 丙醇、甘油、按体积比1:1混合的正戊烷和异戊烷、按体积比4:1混合的甲醇和乙醇、石油醚、氮气、氩气和氦气。从红宝石R(1)荧光线的展宽效应角度讨论了压力的非静水特性。在室温下,R(1)线在液 - 固转变压力以上基本会展宽。然而,在低温下从低压区域开始,所有介质中的非静水效应都会持续发展。讨论了低温区域介质中非静水效应的相对强度。在77 K时,氮气、氩气和氦气介质中红宝石R(1)线的展宽效应明显较小,这表明这些介质更适合在高达10 GPa的高压下使用DAC进行低温实验。在4.2 K时也证实了这三种介质的适用性。

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