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Ab initio pair potential energy curve for the argon atom pair and thermophysical properties for the dilute argon gas. II. Thermophysical properties for low-density argon

机译:氩原子对的从头算对势能曲线和稀氩气的热物理性质。二。低密度氩的热物理性质

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摘要

A recent argon-argon interatomic potential energy curve determined from quantum-mechanical ab initio calculations and described with an analytical representation [B. Jager, R. Hellmann, E. Bich, and E. Vogel, Mol. Phys. 107, 2181 (2009); 108, 105 (2010)] was used to calculate the most important thermophysical properties of argon governed by two-body interactions. Second pressure, acoustic, and dielectric virial coefficients as well as viscosity and thermal conductivity in the limit of zero density were computed for natural argon from 83 to 10,000 K. The calculated values for the different thermophysical properties are compared with available experimental data and values computed for other argon-argon potentials. This extensive analysis shows that the proposed potential is superior to all previous ones and that the calculated thermophysical property values are accurate enough to be applied as standard values for the complete temperature range of the calculations.
机译:最近的氩-氩原子间势能曲线由量子力学从头算确定,并用解析表示法描述[B. Jager,R。Hellmann,E。Bich和E. Vogel,莫尔。物理107,2181(2009); 108,105(2010)]用于计算受两体相互作用控制的氩的最重要的热物理性质。计算了从83到10,000 K的天然氩的第二压力,声学和介电病毒系数以及零密度极限下的粘度和导热系数。将不同热物理性质的计算值与可用的实验数据进行了比较,并计算出值对于其他氩-氩势。广泛的分析表明,建议的电势优于所有以前的电势,并且所计算的热物理性质值足够准确,可以用作计算的整个温度范围的标准值。

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