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Detonation Product EOS Studies: Using ISLS to Refine Cheetah

机译:爆炸产品EOS研究:使用ISLS完善猎豹

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Knowledge of an effective interatomic potential function underlies any effort to predict or rationalize the properties of solids and liquids. The experiments we undertake are directed towards determination of equilibrium and dynamic properties of simple fluids at densities sufficiently high that traditional computational methods and semi-empirical forms successful at ambient conditions may require reconsideration. In this paper we present high-pressure and temperature experimental sound speed data on a simple fluid, methanol. Impulsive Stimulated Light Scattering (ISLS) conducted on diamond-anvil cell (DAC) encapsulated samples offers an experimental approach to determine cross-pair potential interactions through equation of state determinations. In addition the kinetics of structural relaxation in fluids can be studied. We compare our experimental results with our thermochemical computational model Cheetah. Experimentally grounded computational models provide a good basis to confidently understand the chemical nature of reactions at extreme conditions.
机译:对有效的原子间势能的了解是预测或合理化固体和液体性质的任何努力的基础。我们进行的实验旨在确定密度足够高的简单流体的平衡和动态特性,以至于传统的计算方法和在环境条件下成功的半经验形式可能需要重新考虑。在本文中,我们介绍了有关简单流体甲醇的高压和高温实验声速数据。在金刚石-铁砧单元(DAC)封装的样品上进行的脉冲激发光散射(ISLS)提供了一种通过状态确定方程确定交叉对电位相互作用的实验方法。另外,可以研究流体中结构弛豫的动力学。我们将实验结果与热化学计算模型Cheetah进行比较。以实验为基础的计算模型为可靠地了解极端条件下反应的化学性质提供了良好的基础。

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