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首页> 外文期刊>Physics of the Earth and Planetary Interiors: A Journal Devoted to Obsevational and Experimerntal Studies of the Chemistry and Physics of Planetary Interiors and Their Theoretical Interpretation >Pressure-volume data for epsilon iron and platinum to earth-core pressures and above from one-parameter equation of state: Implication on platinum pressure scale
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Pressure-volume data for epsilon iron and platinum to earth-core pressures and above from one-parameter equation of state: Implication on platinum pressure scale

机译:一参数状态方程的ε铁和铂对地心及以上压力的压力体积数据:对铂压力标度的影响

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The one-parameter equation of state (EoS), wherein the bulk modulus at ambient pressure is the only unknown parameter and the pressure derivative of the bulk modulus is fixed by requiring that the state of matter approaches Thomas-Fermi state under strong compression, has been used to compute the pressure, bulk modulus, and pressure derivative of bulk modulus as functions of volume compression for epsilon iron. To earth-core pressures (similar to 363 GPa), these data are in excellent agreement with the 300 K data obtained from the analysis of the PREM tabulation using K-primed equation. Even to similar to 2300 GPa, the two sets of data show excellent agreement. This agreement suggests that compression behavior of the core alloy deduced at 300 K is close to that of pure epsilon iron. The pressure-volume data for platinum to similar to 650 GPa computed from one-parameter EoS are in excellent agreement with those obtained from the first-principle calculations and shock-wave experiments. This agreement does not strengthen the suggestion in the literature that the platinum pressure scale contains large systematic errors. The breakdown of the fundamental assumption made in high-pressure X-ray diffraction experiments that the pressure on the sample equals that on the pressure standard is shown to cause the discrepancy between the compression data on epsilon iron from laboratory source and those predicted from one-parameter EoS. (c) 2007 Elsevier B.V. All rights reserved.
机译:一种单参数状态方程(EoS),其中环境压力​​下的体积模量是唯一未知的参数,并且通过要求物质的状态在强压缩下接近Thomas-Fermi状态来固定体积模量的压力导数,被用来计算压力,体积模量和体积模量的压力导数作为ε铁体积压缩的函数。对于地心压力(类似于363 GPa),这些数据与使用K-primed方程对PREM表格进行分析获得的300 K数据极为吻合。即使类似于2300 GPa,两组数据也显示出极好的一致性。该协议表明,在300 K时推断出的核心合金的压缩行为与纯ε铁的压缩行为接近。由单参数EoS计算得出的类似于650 GPa的铂压力体积数据与从第一性原理计算和冲击波实验获得的数据非常一致。该协议并未加强文献中关于铂压力标度包含较大系统误差的建议。在高压X射线衍射实验中做出的基本假设的分解,表明样品上的压力等于压力标准上的压力,这导致在实验室来源的ε铁上的压缩数据与一个实验室得出的预测数据之间存在差异。参数EoS。 (c)2007 Elsevier B.V.保留所有权利。

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