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化学计量比二氧化铀预熔和熔化相变的分子动力学模拟

Molecular dynamics simulation of premelting and melting phase transitions in stoichiometric uranium dioxide.

作者信息

Yakub Eugene, Ronchi Claudio, Staicu Dragos

机构信息

Cybernetics Department Odessa State Economic University, Preobrazhenskaya Street 8, 65082 Odessa, Ukraine.

出版信息

J Chem Phys. 2007 Sep 7;127(9):094508. doi: 10.1063/1.2764484.

Abstract

Results of molecular dynamics (MD) simulation of UO2 in a wide temperature range are presented and discussed. A new approach to the calibration of a partly ionic Busing-Ida-type model is proposed. A potential parameter set is obtained reproducing the experimental density of solid UO2 in a wide range of temperatures. A conventional simulation of the high-temperature stoichiometric UO2 on large MD cells, based on a novel fast method of computation of Coulomb forces, reveals characteristic features of a premelting lambda transition at a temperature near to that experimentally observed (T(lambda)=2670 K). A strong deviation from the Arrhenius behavior of the oxygen self-diffusion coefficient was found in the vicinity of the transition point. Predictions for liquid UO2, based on the same potential parameter set, are in good agreement with existing experimental data and theoretical calculations.

摘要

本文展示并讨论了在宽温度范围内二氧化铀分子动力学(MD)模拟的结果。提出了一种校准部分离子型Busing-Ida模型的新方法。获得了一组势参数,可在宽温度范围内重现固态二氧化铀的实验密度。基于一种新颖的库仑力快速计算方法,在大型MD细胞上对高温化学计量二氧化铀进行的传统模拟揭示了在接近实验观测温度(T(λ)=2670 K)时预熔λ转变的特征。在转变点附近发现氧自扩散系数与阿累尼乌斯行为有很大偏差。基于相同势参数集对液态二氧化铀的预测与现有实验数据和理论计算结果吻合良好。

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