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首页> 外文期刊>Journal of Applied Physics >Single-standard method for simultaneous pressure and temperature estimation using Sm~(2+):SrB_4O_7 fluorescence
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Single-standard method for simultaneous pressure and temperature estimation using Sm~(2+):SrB_4O_7 fluorescence

机译:使用Sm〜(2 +):SrB_4O_7荧光同时估算压力和温度的单标准方法

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摘要

The influence of temperature on fluorescence spectra used for pressure calibration in a diamond anvil cell (i.e., that of ruby) was always considered as an undesirable phenomenon decreasing the accuracy of pressure measurement in high-temperature experiments. Consequently, nearly temperature-independent fluorescence lines of such pressure calibrants as Sm2+:SrB4O7 and Sm3+:YAG were proposed as the best suited for pressure measurement. We analyzed pressure- and temperature-induced shifts of eight fluorescence lines in Sm2+:SrB4O7 spectrum, extending previous calibrations to 60 GPa and 580 degrees C, and demonstrated that both pressure and temperature in a "high-pressure + high-temperature" experiment can be reliably estimated by analysis of shifts of two fluorescence lines with different sensitivity to pressure and temperature. We tested the proposed method in an experiment with simultaneous pressure and temperature (up to 7 GPa and 400 degrees C) and proved that the temperature may be successfully estimated together with pressure from a single Sm2+:SrB4O7 spectrum with an e.s.d. of 8 degrees C. Published by AIP Publishing.
机译:温度对金刚石砧座中用于压力校准的荧光光谱(即红宝石)的影响一直被认为是降低高温实验中压力测量精度的不良现象。因此,提出了诸如Sm2 +:SrB4O7和Sm3 +:YAG等压力校准物的几乎与温度无关的荧光谱线,是最适合于压力测量的。我们分析了压力和温度引起的Sm2 +:SrB4O7光谱中的8条荧光线的移动,将先前的校准扩展到60 GPa和580摄氏度,并证明了“高温+高温”下的压力和温度均如此。通过分析对压力和温度具有不同敏感性的两条荧光线的移动,可以可靠地估算实验。我们在同时具有压力和温度(最高7 GPa和400摄氏度)的实验中测试了所提出的方法,并证明可以成功地从单个Sm2 +:SrB4O7光谱中将温度与压力一起估算出e.s.d.最高温度为8摄氏度。由AIP Publishing发布。

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