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State-of-the-art ab initio potential energy curve for the krypton atom pair and thermophysical properties of dilute krypton gas

机译:k原子对的最新从头算势能曲线和稀k气的热物理性质

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A new reference krypton-krypton interatomic potential energy curve was developed by means of quantum-chemical ab initio calculations for 36 interatomic separations. Highly accurate values for the interaction energies at the complete basis set limit were obtained using the coupled-cluster method with single, double, and perturbative triple excitations as well as t-aug-cc-pV5Z and t-aug-cc-pV6Z basis sets including mid-bond functions, with the 6Z basis set being newly constructed for this study. Higher orders of coupled-cluster terms were considered in a successive scheme up to full quadruple excitations. Core-core and core-valence correlation effects were included. Furthermore, relativistic effects were studied not only at a scalar relativistic level using second-order direct perturbation theory, but also utilizing full four-component and Gaunt-effect computations. An analytical pair potential function was fitted to the interaction energies, which is characterized by a depth of 200.88 K with an estimated standard uncertainty of 0.51 K. Thermophysical properties of low-density krypton were calculated for temperatures up to 5000 K. Second and third virial coefficients were obtained from statistical thermodynamics. Viscosity and thermal conductivity as well as the self-diffusion coefficient were computed using the kinetic theory of gases. The theoretical results are compared with experimental data and with results for other pair potential functions from the literature, especially with those calculated from the recently developed ab initio potential of Waldrop et al. [J. Chem. Phys. 142, 204307 (2015)]. Highly accurate experimental viscosity data indicate that both the present ab initio pair potential and the one of Waldrop et al. can be regarded as reference potentials, even though the quantum-chemical methods and basis sets differ. However, the uncertainties of the present potential and of the derived properties are estimated to be considerably lower. (C) 2016 AIP Publishing LLC.
机译:通过量子化学从头算的方法,针对36个原子间的分离,开发了一条新的参考k-原子间原子势能曲线。使用具有单,双和扰动三重激发的耦合簇方法以及t-aug-cc-pV5Z和t-aug-cc-pV6Z基础集,获得了在完整基础集极限处的相互作用能的高精度值。包括中键功能,本研究新构建了6Z基础集。在连续方案中考虑了更高阶的耦合簇项,直到全四重激发。核心-核心和核心价相关效应也包括在内。此外,相对论效应不仅使用二阶直接摄动理论在标量相对论水平上进行研究,而且还利用完整的四分量和Gaunt效应计算进行了研究。将分析对势函数拟合为相互作用能,其特征是深度为200.88 K,估计标准不确定度为0.51K。计算了温度高达5000 K时低密度k的热物理性质。第二和第三病毒系数是从统计热力学获得的。使用气体动力学理论计算粘度和导热率以及自扩散系数。将理论结果与实验数据进行比较,并与文献中其他对势函数的结果进行比较,尤其是与根据Waldrop等人最近开发的从头算势计算得出的结果进行比较。 [J.化学物理142,204307(2015)。高度精确的实验粘度数据表明,目前的从头算对电位和Waldrop等人的研究都具有潜力。即使量子化学方法和基础集不同,也可以将其视为参考电位。但是,目前的电势和导出的特性的不确定性估计要低得多。 (C)2016 AIP出版有限责任公司。

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